Academic

Emily Balskus

Chemistry · 0000-0001-5985-5714 · Harvard University

Citations received by year

OpenAlex · CV works

Series: Citations received.05001000150020002012 Citations received 88882013 Citations received 1131132014 Citations received 1981982015 Citations received 2612612016 Citations received 3413412017 Citations received 4324322018 Citations received 6556552019 Citations received 8828822020 Citations received 111211122021 Citations received 144914492022 Citations received 135913592023 Citations received 131213122024 Citations received 166516652025 Citations received 172417242026 Citations received 1272127220122014201620182020202220242026Citations receivedCalendar year
Series: Citations received.05001000150020002012 Citations received 882013 Citations received 1132014 Citations received 1982015 Citations received 2612016 Citations received 3412017 Citations received 4322018 Citations received 6552019 Citations received 8822020 Citations received 11122021 Citations received 14492022 Citations received 13592023 Citations received 13122024 Citations received 16652025 Citations received 17242026 Citations received 12722012201520202026Citations receivedCalendar year

No verified Scholar annual history. OpenAlex reports annual counts for 125 of 135 counted CV works. Bars sum the available counts; coverage can differ by year. Missing years are unknown. OpenAlex histories cover a limited recent window. 2026 is an incomplete calendar year.

Publications

135 rows, 1 needs review

2026 Flavoaffinins, Elusive Cellulose-Binding Natural Products from an Anaerobic Bacterium Journal of the American Chemical Society article journal CV OA GS

CV span

lines 123–125 · CV · published

123129. Kountz, Duncan J.; Yu, Ruocheng; *Lee, Jessie H.; Maloney, Katherine N.; Balskus, Emily P.124“Flavoaffinins, elusive cellulose-binding natural products from an anaerobic bacterium” bioRxiv 2025,125doi.org/10.1101/2025.02.08.637243

Institution fields

Peer reviewed
no
First author
Kountz
Co-authors
Kountz, Duncan J.; Yu, Ruocheng; Lee, Jessie H.; Maloney, Katherine N.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title openalex Flavoaffinins, elusive cellulose-binding natural products from an anaerobic bacteriumFlavoaffinins, elusive cellulose-binding natural products from an anaerobic bacteriumFlavoaffinins, Elusive Cellulose-Binding Natural Products from an Anaerobic Bacterium
year openalex 202520252026
venue openalex bioRxivbioRxiv (Cold Spring Harbor Laboratory)Journal of the American Chemical Society
kind openalex working_paperworking_paperarticle
DOI openalex 10.1101/2025.02.08.63724310.1101/2025.02.08.63724310.1021/jacs.5c15360
preprint DOI cv 10.1101/2025.02.08.63724310.1101/2025.02.08.637243
first author openalex KountzKountzKountz

Citations

OpenAlex
0
Scholar
none
OpenAlex with related records
1
DOI
10.1021/jacs.5c15360
OpenAlex
W7124321906

Match decisions

  • doi merged · 1.00 · Run 18
2026 Phenotypic high-throughput screening identifies modulators of gut microbial choline metabolism mBio article journal CV OA GS

CV span

lines 131–134 · CV · published

131127. Woo, Amelia Y. M.; Sandoval–Espinola, Walter J.; Bollenbach, Maud; Wong, Alison; Sakanaka–132Yokoyama, Mariko; Zhang, Qijun; Nieto, Vincent; Rey, Federico E.; Balskus, Emily P. “Phenotypic high-133throughput screening identifies modulators of gut microbial choline metabolism” bioRxiv 2024, preprint.134doi.org/10.1101/2024.11.08.621386

Institution fields

Peer reviewed
no
First author
Woo
Co-authors
Woo, Amelia Y. M.; Sandoval–Espinola, Walter J.; Bollenbach, Maud; Wong, Alison; Sakanaka–Yokoyama, Mariko; Zhang, Qijun; Nieto, Vincent; Rey, Federico E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title openalex Phenotypic high-throughput screening identifies modulators of gut microbial choline metabolismPhenotypic high-throughput screening identifies modulators of gut microbial choline metabolismPhenotypic high-throughput screening identifies modulators of gut microbial choline metabolism
year openalex 202420242026
venue openalex bioRxivbioRxiv (Cold Spring Harbor Laboratory)mBio
kind openalex working_paperworking_paperarticle
DOI openalex 10.1101/2024.11.08.62138610.1101/2024.11.08.62138610.1128/mbio.01172-25
preprint DOI cv 10.1101/2024.11.08.62138610.1101/2024.11.08.621386
first author openalex WooWooWoo

Citations

OpenAlex
2
Scholar
none
OpenAlex with related records
3
DOI
10.1128/mbio.01172-25
OpenAlex
W7131129513

Match decisions

  • doi merged · 1.00 · Run 18
2025 A Small-Molecule Inhibitor of Gut Bacterial Urease Protects the Host from Liver Injury. ACS Chemical Biology article journal CV OA GS

CV span

lines 157–160 · CV · published

157122. Richards-Corke, Khyle C.; Jiang, Yindi; Yeliseyev, Vladimir; Zhang, Yancong; Franzosa, Eric A.;158Wang, Zhipeng A.; Yapa Abeywardana, Maheeshi; Cole, Phillip A.; Huttenhower, Curtis; Bry, Lynn;159Balskus, Emily P. “A Small-Molecule Inhibitor of Gut Bacterial Urease Protects the Host from Liver160Injury.” ACS Chem. Bio. 2025, 20, 48–55.

Institution fields

Peer reviewed
yes
First author
Richards-Corke
Co-authors
Richards-Corke, Khyle C.; Jiang, Yindi; Yeliseyev, Vladimir; Zhang, Yancong; Franzosa, Eric A.; Wang, Zhipeng A.; Yapa Abeywardana, Maheeshi; Cole, Phillip A.; Huttenhower, Curtis; Bry, Lynn; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A Small-Molecule Inhibitor of Gut Bacterial Urease Protects the Host from Liver Injury.A Small-Molecule Inhibitor of Gut Bacterial Urease Protects the Host from Liver Injury
year cv 20252025
venue crossref ACS Chem. Bio.ACS Chemical BiologyACS Chemical Biology
kind cv articlearticle
DOI crossref 10.1021/acschembio.3c0055610.1021/acschembio.3c00556
first author openalex Richards-CorkeRichards-Corke

Citations

OpenAlex
8
Scholar
none
DOI
10.1021/acschembio.3c00556
OpenAlex
W4406167588

Match decisions

  • doi merged · 1.00 · Run 18
2025 Distinct classes of gut bacterial molybdenum-dependent enzymes produce urolithins Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 127–129 · CV · published

127128. Bae, Minwoo; Dong, Xueyang; Avila-Pacheco, Julian; *Inyama, Fechi; Hill-Maini, Vayu; Clish, Clary;128Balskus, Emily P. “Distinct Classes of Gut Bacterial Molybdenum-Dependent Enzymes Produce129Urolithins” bioRxiv 2025, preprint. doi.org/10.1101/2025.01.17.632430

Institution fields

Peer reviewed
no
First author
Bae
Co-authors
Bae, Minwoo; Dong, Xueyang; Avila-Pacheco, Julian; Inyama, Fechi; Hill-Maini, Vayu; Clish, Clary; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title openalex Distinct Classes of Gut Bacterial Molybdenum-Dependent Enzymes Produce UrolithinsDistinct Classes of Gut Bacterial Molybdenum-Dependent Enzymes Produce UrolithinsDistinct classes of gut bacterial molybdenum-dependent enzymes produce urolithins
year openalex 202520252025
venue openalex bioRxivbioRxiv (Cold Spring Harbor Laboratory)Proceedings of the National Academy of Sciences
kind openalex working_paperworking_paperarticle
DOI openalex 10.1101/2025.01.17.63243010.1101/2025.01.17.63243010.1073/pnas.2501312122
preprint DOI cv 10.1101/2025.01.17.63243010.1101/2025.01.17.632430
first author openalex BaeBaeBae

Citations

OpenAlex
6
Scholar
none
OpenAlex with related records
10
DOI
10.1073/pnas.2501312122
OpenAlex
W7117107433

Match decisions

  • doi merged · 1.00 · Run 18
2025 Enantiocomplementary Gut Bacterial Enzymes Metabolize Dietary Polyphenols Journal of the American Chemical Society article journal CV OA GS

CV span

lines 153–155 · CV · published

153123. Dong, Xueyang; Bae, Minwoo; Le, Chi; Aguilar Ramos, Miguel A.; Balskus, Emily P.154“Enantiocomplementary Gut Bacterial Enzymes Metabolize Dietary Polyphenols” J. Am. Chem. Soc.1552025, 147, 7231–7244.

Institution fields

Peer reviewed
yes
First author
Dong
Co-authors
Dong, Xueyang; Bae, Minwoo; Le, Chi; Aguilar Ramos, Miguel A.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Enantiocomplementary Gut Bacterial Enzymes Metabolize Dietary PolyphenolsEnantiocomplementary Gut Bacterial Enzymes Metabolize Dietary Polyphenols
year cv 20252025
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.4c0989210.1021/jacs.4c09892
first author openalex DongDong

Citations

OpenAlex
20
Scholar
none
DOI
10.1021/jacs.4c09892
OpenAlex
W4407893768

Match decisions

  • doi merged · 1.00 · Run 18
2025 Small molecules as modulators of phage–bacteria interactions. Current Opinion in Chemical Biology article journal CV OA GS

CV span

lines 162–163 · CV · published

162121. Wong, Joel W. H.; Balskus, Emily P. “Small molecules as modulators of phage–bacteria163interactions.” Curr. Opin. Chem. Biol. 2025, 84, 102566. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Wong
Co-authors
Wong, Joel W. H.; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Small molecules as modulators of phage–bacteria interactions.Small molecules as modulators of phage–bacteria interactions
year cv 20252024
venue crossref Curr. Opin. Chem. Biol.Current Opinion in Chemical BiologyCurrent Opinion in Chemical Biology
kind cv articlereview
DOI crossref 10.1016/j.cbpa.2024.10256610.1016/j.cbpa.2024.102566
first author openalex WongWong

Citations

OpenAlex
10
Scholar
none
DOI
10.1016/j.cbpa.2024.102566
OpenAlex
W4405870436

Match decisions

  • doi merged · 1.00 · Run 18
2025 The Fanconi anemia pathway repairs colibactin-induced DNA interstrand cross-links Nature Communications article journal CV OA GS

CV span

lines 142–145 · CV · published

142125. Altshuller, Maria; He, Xu; MacKrell, Elliot J.; Wernke, Kevin M.; Wong, Joel W.H.; Sellés-Baiget,143Selene; Wang, Ting-Yu; Chou, Tsui-Fen; Duxin, Julien P.; Balskus, Emily P.; Herzon, Seth B.; Semlow,144Daniel. “The Fanconi anemia pathway repairs colibactin-induced DNA interstrand cross-145links” bioRxiv 2024, preprint. doi.org/10.1101/2024.01.30.576698

Institution fields

Peer reviewed
no
First author
Altshuller
Co-authors
Altshuller, Maria; He, Xu; MacKrell, Elliot J.; Wernke, Kevin M.; Wong, Joel W.H.; Sellés-Baiget, Selene; Wang, Ting-Yu; Chou, Tsui-Fen; Duxin, Julien P.; Balskus, Emily P.; Herzon, Seth B.; Semlow, Daniel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title openalex The Fanconi anemia pathway repairs colibactin-induced DNA interstrand cross-linksThe Fanconi anemia pathway repairs colibactin-induced DNA interstrand cross-linksThe Fanconi anemia pathway repairs colibactin-induced DNA interstrand cross-links
year openalex 202420242025
venue openalex bioRxivbioRxiv (Cold Spring Harbor Laboratory)Nature Communications
kind openalex working_paperworking_paperarticle
DOI openalex 10.1101/2024.01.30.57669810.1101/2024.01.30.57669810.1038/s41467-025-65606-1
preprint DOI cv 10.1101/2024.01.30.57669810.1101/2024.01.30.576698
first author openalex AltshullerAltshullerAltshuller

Also recorded as

Citations

OpenAlex
2
Scholar
none
OpenAlex with related records
9
DOI
10.1038/s41467-025-65606-1
OpenAlex
W4416718877

Match decisions

  • doi merged · 1.00 · Run 18
2024 Accelerating the discovery of alkyl halide-derived natural products using halide depletion. Nature Chemistry article journal CV OA GS

CV span

lines 208–210 · CV · published

208111. Glasser, Nathaniel R.; Cui, Dongtao; Risser, Douglas D.; Okafor, C. Denise; Balskus, Emily209P. “Accelerating the discovery of alkyl halide-derived natural products using halide depletion.” Nat.210Chem. 2024, 16, 173–184.

Institution fields

Peer reviewed
yes
First author
Glasser
Co-authors
Glasser, Nathaniel R.; Cui, Dongtao; Risser, Douglas D.; Okafor, C. Denise; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Accelerating the discovery of alkyl halide-derived natural products using halide depletion.Accelerating the discovery of alkyl halide-derived natural products using halide depletion
year cv 20242024
venue crossref Nat. Chem.Nature ChemistryNature Chemistry
kind cv articlearticle
DOI crossref 10.1038/s41557-023-01390-z10.1038/s41557-023-01390-z
first author openalex GlasserGlasser

Citations

OpenAlex
17
Scholar
none
DOI
10.1038/s41557-023-01390-z
OpenAlex
W4390822007

Match decisions

  • doi merged · 1.00 · Run 18
2024 A metabolomics pipeline highlights microbial metabolism in bloodstream infections Cell article journal CV OA GS

CV span

lines 203–206 · CV · published

203112. Mayers, Jared R .; Varon, Jack; Zhou, Ruixuan R.; Daniel-Ivad, Martin; Beaulieu, Courtney; Bholse,204Amrisha; Glasser, Nathaniel R.; *Lichtenauer, Franziska M.; Ng, Julie; Pinilla Vera, Mayra; Huttenhower,205Curtis; Perrella, Mark A.; Clish, Clary B.; Zhao, Sihai D.; Baron, Rebecca M.; Balskus, Emily P. “A206metabolomics pipeline highlights microbial metabolism in bloodstream infections” Cell 2024, 187, 1–18.

Institution fields

Peer reviewed
yes
First author
Mayers
Co-authors
Mayers, Jared R .; Varon, Jack; Zhou, Ruixuan R.; Daniel-Ivad, Martin; Beaulieu, Courtney; Bholse, Amrisha; Glasser, Nathaniel R.; Lichtenauer, Franziska M.; Ng, Julie; Pinilla Vera, Mayra; Huttenhower, Curtis; Perrella, Mark A.; Clish, Clary B.; Zhao, Sihai D.; Baron, Rebecca M.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv A metabolomics pipeline highlights microbial metabolism in bloodstream infectionsA metabolomics pipeline highlights microbial metabolism in bloodstream infections
year cv 20242024
venue crossref CellCell
kind cv articlearticle
DOI crossref 10.1016/j.cell.2024.05.03510.1016/j.cell.2024.05.035
first author openalex MayersMayers

Citations

OpenAlex
52
Scholar
none
DOI
10.1016/j.cell.2024.05.035
OpenAlex
W4399715349

Match decisions

  • doi merged · 1.00 · Run 18
2024 Bacterial Sphingolipids Exacerbate Colitis by Inhibiting ILC3-derived IL-22 Production Gastroenterology article journal CV OA GS

CV span

lines 184–188 · CV · published

184116. Bao, Bin; Wang, Youyuan; Boudreau, Paul; Song, Xinyang; Wu, Meng; Chen, Xi; Patik, Izabel; Tang,185Ying; Ouahed, Jodie; Ringel, Amit; Barends, Jared; Wu, Chuan; Balskus, Emily P.; Thiagarajah, Jay;186Liu, Jian; Wessels, Michael R.; Lencer, Wayne; Kasper, Dennis L.; An, Dingding; Horwitz, Bruce;187Snapper, Scott B. “Bacterial Sphingolipids Exacerbate Colitis by Inhibiting ILC3-derived IL-22 Production”188Cell. Mol. Gastroenterol. Hepatol. 2024, 18, 101350.

Institution fields

Peer reviewed
yes
First author
Bao
Co-authors
Bao, Bin; Wang, Youyuan; Boudreau, Paul; Song, Xinyang; Wu, Meng; Chen, Xi; Patik, Izabel; Tang, Ying; Ouahed, Jodie; Ringel, Amit; Barends, Jared; Wu, Chuan; Balskus, Emily P.; Thiagarajah, Jay; Liu, Jian; Wessels, Michael R.; Lencer, Wayne; Kasper, Dennis L.; An, Dingding; Horwitz, Bruce; Snapper, Scott B.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Bacterial Sphingolipids Exacerbate Colitis by Inhibiting ILC3-derived IL-22 ProductionBacterial Sphingolipids Exacerbate Colitis by Inhibiting ILC3-derived IL-22 ProductionBACTERIAL SPHINGOLIPIDS EXACERBATE COLITIS BY INHIBITING ILC3-DERIVED IL-22 PRODUCTIONBacterial Sphingolipids Exacerbate Colitis by Inhibiting ILC3-derived IL-22 Production
year cv 2024202320242024
venue crossref Cell. Mol. Gastroenterol. Hepatol.bioRxiv (Cold Spring Harbor Laboratory)GastroenterologyCellular and Molecular Gastroenterology and HepatologyGastroenterology
kind cv articleworking_paperarticlearticle
DOI crossref 10.1053/j.gastro.2023.11.20010.1101/2023.09.05.55540010.1053/j.gastro.2023.11.20010.1016/j.jcmgh.2024.04.007
preprint DOI openalex 10.1101/2023.09.05.555400
first author openalex BaoBaoBaoBao

Also recorded as

Citations

OpenAlex
1
Scholar
none
OpenAlex with related records
2
DOI
10.1053/j.gastro.2023.11.200
OpenAlex
W4391218728

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2024 Discovery of a new class of aminoacyl radical enzymes expands nature’s known radical chemistry. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 170–172 · CV · published

170119. Fu, Beverly; Yang, Hao; Kountz, Duncan J.; Lundahl, Maike N.; Beller, Harry R.; Broderick, William171E.; Broderick, Joan B.; Hoffman, Brian H.; Balskus, Emily P. “Discovery of a new class of aminoacyl172radical enzymes expands nature’s known radical chemistry.” J. Am. Chem. Soc. 2024, 46, 29645–29655.

Institution fields

Peer reviewed
yes
First author
Fu
Co-authors
Fu, Beverly; Yang, Hao; Kountz, Duncan J.; Lundahl, Maike N.; Beller, Harry R.; Broderick, William E.; Broderick, Joan B.; Hoffman, Brian H.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Discovery of a new class of aminoacyl radical enzymes expands nature’s known radical chemistry.Discovery of a New Class of Aminoacyl Radical Enzymes Expands Nature’s Known Radical Chemistry
year cv 20242024
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.4c1034810.1021/jacs.4c10348
first author openalex FuFu

Citations

OpenAlex
12
Scholar
none
DOI
10.1021/jacs.4c10348
OpenAlex
W4403332606

Match decisions

  • doi merged · 1.00 · Run 18
2024 Dysfunctional mucus structure in cystic fibrosis increases vulnerability to colibactin-mediated DNA adducts in the colon mucosa Gut Microbes article journal CV OA GS

CV span

lines 174–177 · CV · published

174118. Mandarino Alves, Amanda; Lecchi, Chiara; Lopez, Sharon; Stornetta, Alessia; Mathai, Prince P.;175Villalta, Peter W.; Ishii, Satoshi; Balskus, Emily P.; Balbo, Silvia; Khoruts, Alexander. “Dysfunctional176mucus structure in cystic fibrosis increases vulnerability to colibactin-mediated DNA adducts in the colon177mucosa” Gut Microbes 2024 16, 2387877.

Institution fields

Peer reviewed
yes
First author
Mandarino Alves
Co-authors
Mandarino Alves, Amanda; Lecchi, Chiara; Lopez, Sharon; Stornetta, Alessia; Mathai, Prince P.; Villalta, Peter W.; Ishii, Satoshi; Balskus, Emily P.; Balbo, Silvia; Khoruts, Alexander
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Dysfunctional mucus structure in cystic fibrosis increases vulnerability to colibactin-mediated DNA adducts in the colon mucosaDysfunctional mucus structure in cystic fibrosis increases vulnerability to colibactin-mediated DNA adducts in the colon mucosa
year cv 20242024
venue crossref Gut MicrobesGut Microbes
kind cv articlearticle
DOI crossref 10.1080/19490976.2024.238787710.1080/19490976.2024.2387877
first author openalex AlvesAlves

Citations

OpenAlex
14
Scholar
none
DOI
10.1080/19490976.2024.2387877
OpenAlex
W4401505377

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2024 Elucidation of chalkophomycin biosynthesis reveals N-hydroxypyrrole-forming enzymes Journal of the American Chemical Society article journal CV OA GS

CV span

lines 190–192 · CV · published

190115. Crooke, Anne Marie; *Chand, Anika K.; Cui, Zheng; Balskus, Emily P. “Elucidation of191chalkophomycin biosynthesis reveals N-hydroxypyrrole-forming enzymes” J. Am. Chem. Soc. 2024, 146,19223, 16268–16280.

Institution fields

Peer reviewed
yes
First author
Crooke
Co-authors
Crooke, Anne Marie; Chand, Anika K.; Cui, Zheng; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Elucidation of chalkophomycin biosynthesis reveals N-hydroxypyrrole-forming enzymesElucidation of chalkophomycin biosynthesis reveals N -hydroxypyrrole-forming enzymesElucidation of Chalkophomycin Biosynthesis Reveals N-Hydroxypyrrole-Forming Enzymes
year cv 202420242024
venue crossref J. Am. Chem. Soc.bioRxiv (Cold Spring Harbor Laboratory)Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articleworking_paperarticle
DOI crossref 10.1021/jacs.4c0471210.1101/2024.01.24.57711810.1021/jacs.4c04712
preprint DOI openalex 10.1101/2024.01.24.577118
first author openalex CrookeCrookeCrooke

Citations

OpenAlex
15
Scholar
none
OpenAlex with related records
17
DOI
10.1021/jacs.4c04712
OpenAlex
W4399118212

Match decisions

  • doi merged · 1.00 · Run 18
2024 Gut bacteria convert glucocorticoids into progestins in the presence of hydrogen gas Cell article journal CV OA GS

CV span

lines 179–182 · CV · published

179117. McCurry, Megan D.; D'Agostino, Gabriel D.; Walsh, Jasmine T.; Bisanz, Jordan E.; Zalosnik, Ines;180Dong, Xueyang; Morris, David J.; Korzenik, Joshua R.; Edlow, Andrea G.; Balskus, Emily P.;181Turnbaugh, Peter J.; Huh, Jun R.; Devlin, A. Sloan. “Gut bacteria convert glucocorticoids into progestins182in the presence of hydrogen gas” Cell 2024, 187, 2952-2968.e13.

Institution fields

Peer reviewed
yes
First author
McCurry
Co-authors
McCurry, Megan D.; D'Agostino, Gabriel D.; Walsh, Jasmine T.; Bisanz, Jordan E.; Zalosnik, Ines; Dong, Xueyang; Morris, David J.; Korzenik, Joshua R.; Edlow, Andrea G.; Balskus, Emily P.; Turnbaugh, Peter J.; Huh, Jun R.; Devlin, A. Sloan
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Gut bacteria convert glucocorticoids into progestins in the presence of hydrogen gasGut bacteria convert glucocorticoids into progestins in the presence of hydrogen gas
year cv 20242024
venue crossref CellCell
kind cv articlearticle
DOI crossref 10.1016/j.cell.2024.05.00510.1016/j.cell.2024.05.005
first author openalex McCurryMcCurry

Citations

OpenAlex
101
Scholar
none
DOI
10.1016/j.cell.2024.05.005
OpenAlex
W4398784823

Match decisions

  • doi merged · 1.00 · Run 18
2024 Metatranscriptomics-guided discovery and characterization of a polyphenol-metabolizing gut microbial enzyme. Cell Host & Microbe article journal CV OA GS

CV span

lines 165–168 · CV · published

165120. Bae, Minwoo; Le, Chi (Chip); Mehta, Raaj S.; Dong, Xueyang; Pieper, Lindsey M.; Ramirez,166Lorenzo; Alexander, Margaret; *Kiamehr, Sina; Turnbaugh, Peter J.; Huttenhower, Curtis; Chan, Andrew167T.; Balskus, Emily P. “Metatranscriptomics-guided discovery and characterization of a polyphenol-168metabolizing gut microbial enzyme.” Cell Host Microbe 2024, 32, 1–10.

Institution fields

Peer reviewed
yes
First author
Bae
Co-authors
Bae, Minwoo; Le, Chi (Chip); Mehta, Raaj S.; Dong, Xueyang; Pieper, Lindsey M.; Ramirez, Lorenzo; Alexander, Margaret; Kiamehr, Sina; Turnbaugh, Peter J.; Huttenhower, Curtis; Chan, Andrew T.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Metatranscriptomics-guided discovery and characterization of a polyphenol-metabolizing gut microbial enzyme.Metatranscriptomics-guided discovery and characterization of a polyphenol-metabolizing gut microbial enzyme
year cv 20242024
venue crossref Cell Host MicrobeCell Host & MicrobeCell Host & Microbe
kind cv articlearticle
DOI crossref 10.1016/j.chom.2024.10.00210.1016/j.chom.2024.10.002
first author openalex BaeBae

Citations

OpenAlex
39
Scholar
none
DOI
10.1016/j.chom.2024.10.002
OpenAlex
W4403825121

Match decisions

  • doi merged · 1.00 · Run 18
2024 Prevotella are major contributors of sialidases in the human vaginal microbiome Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 194–197 · CV · published

194114. Pelayo, Paula; Hussain, Fatima A.; Werlang, Caroline A.; Wu, Chloe; Woolston, Benjamin M.; Xiang,195Claire M.; Rutt, Lindsay; France, Michael T.; Ravel, Jacques; Ribbeck, Katharina; Kwon, Douglas S.;196Balskus, Emily P. “Prevotella are major contributors of sialidases in the human vaginal microbiome”197Proc. Natl. Acad. Sci. U.S.A. 2024, 121, e2400341121.

Institution fields

Peer reviewed
yes
First author
Pelayo
Co-authors
Pelayo, Paula; Hussain, Fatima A.; Werlang, Caroline A.; Wu, Chloe; Woolston, Benjamin M.; Xiang, Claire M.; Rutt, Lindsay; France, Michael T.; Ravel, Jacques; Ribbeck, Katharina; Kwon, Douglas S.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Prevotella are major contributors of sialidases in the human vaginal microbiomePrevotella are major contributors of sialidases in the human vaginal microbiomePrevotella are major contributors of sialidases in the human vaginal microbiome
year cv 202420242024
venue crossref Proc. Natl. Acad. Sci. U.S.A.bioRxiv (Cold Spring Harbor Laboratory)Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articleworking_paperarticle
DOI crossref 10.1073/pnas.240034112110.1101/2024.01.09.57489510.1073/pnas.2400341121
preprint DOI openalex 10.1101/2024.01.09.574895
first author openalex PelayoPelayoPelayo

Citations

OpenAlex
43
Scholar
none
OpenAlex with related records
48
DOI
10.1073/pnas.2400341121
OpenAlex
W4401876253

Match decisions

  • doi merged · 1.00 · Run 18
2024 Prevotella timonensis degrades the vaginal epithelial glycocalyx through high fucosidase and sialidase activities mBio article journal CV OA GS

CV span

lines 199–201 · CV · published

199113. Segui Perez, Celia; De Jongh, Rivka; Jonkergouw, Robin; Pelayo, Paula; Balskus, Emily P.;200Zomer, Aldert; Strijbis, Karin. “Prevotella timonensis degrades the vaginal epithelial glycocalyx through201high fucosidase and sialidase activities” mBio 2024, 15, e00691-24.

Institution fields

Peer reviewed
yes
First author
Segui Perez
Co-authors
Segui Perez, Celia; De Jongh, Rivka; Jonkergouw, Robin; Pelayo, Paula; Balskus, Emily P.; Zomer, Aldert; Strijbis, Karin
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Prevotella timonensis degrades the vaginal epithelial glycocalyx through high fucosidase and sialidase activitiesPrevotella timonensis degrades the vaginal epithelial glycocalyx through high fucosidase and sialidase activitiesPrevotella timonensis degrades the vaginal epithelial glycocalyx through high fucosidase and sialidase activitiesPrevotella timonensis degrades the vaginal epithelial glycocalyx through high fucosidase and sialidase activities.
year cv 2024202420242024
venue crossref mBiobioRxiv (Cold Spring Harbor Laboratory)mBioUtrecht University Repository (Utrecht University)
kind cv articleworking_paperarticlearticle
DOI crossref 10.1128/mbio.00691-2410.1101/2024.01.09.57484410.1128/mbio.00691-24
preprint DOI openalex 10.1101/2024.01.09.574844
first author openalex PerezSegui‐PerezSegui‐PerezSegui-Perez

Also recorded as

  • W7149224177 · same title · 2024 Prevotella timonensis degrades the vaginal epithelial glycocalyx through high fucosidase and sialidase activities.

Citations

OpenAlex
33
Scholar
none
OpenAlex with related records
39
DOI
10.1128/mbio.00691-24
OpenAlex
W4401715602

Match decisions

  • doi merged · 1.00 · Run 18
2023 AFMT analogs and their use in methods of treating Parkinson's disease US20230174460A1 other CV OA GS

CV span

lines 649–650 · CV · published

6495. Le, Chi; Balskus, Emily P. AFMT analogs and their use in methods of treating Parkinson's650disease. US20230174460A1, June 8, 2023.

Institution fields

Peer reviewed
none
First author
Le
Co-authors
Le, Chi; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv AFMT analogs and their use in methods of treating Parkinson's disease
year cv 2023
venue cv US20230174460A1
kind cv other
first author cv Le

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2023 A small molecule inhibitor prevents gut bacterial genotoxin production. Nature Chemical Biology article journal CV OA GS

CV span

lines 248–251 · CV · published

248103. Volpe, Matthew R.; Velilla, José A.; Daniel-Ivad, Martin; *Yao, Jenny J.; Stornetta, Alessia; Villalta,249Peter W.; Huang, Hsin-Che; Bachovchin, Daniel A.; Balbo, Silvia; Gaudet, Rachelle; Balskus, Emily P.250“A small molecule inhibitor prevents gut bacterial genotoxin production.” Nat. Chem. Biol. 2023, 19, 159–251167.

Institution fields

Peer reviewed
yes
First author
Volpe
Co-authors
Volpe, Matthew R.; Velilla, José A.; Daniel-Ivad, Martin; Yao, Jenny J.; Stornetta, Alessia; Villalta, Peter W.; Huang, Hsin-Che; Bachovchin, Daniel A.; Balbo, Silvia; Gaudet, Rachelle; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A small molecule inhibitor prevents gut bacterial genotoxin production.A small molecule inhibitor prevents gut bacterial genotoxin production
year cv 20232022
venue crossref Nat. Chem. Biol.Nature Chemical BiologyNature Chemical Biology
kind cv articlearticle
DOI crossref 10.1038/s41589-022-01147-810.1038/s41589-022-01147-8
first author openalex VolpeVolpe

Citations

OpenAlex
54
Scholar
none
DOI
10.1038/s41589-022-01147-8
OpenAlex
W4306412217

Match decisions

  • doi merged · 1.00 · Run 18
2023 Cholesterol reducing compositions and methods of use thereof US11633436B2 other CV OA GS

CV span

lines 647–648 · CV · published

6474. Kenny, Douglas; Vlamakis Hera; Xavier, Ramnik; Balskus, Emily; Plichta, Damien. Cholesterol648reducing compositions and methods of use thereof. US11633436B2, March 25, 2023.

Institution fields

Peer reviewed
none
First author
Kenny
Co-authors
Kenny, Douglas; Vlamakis Hera; Xavier, Ramnik; Balskus, Emily; Plichta, Damien
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Cholesterol reducing compositions and methods of use thereof
year cv 2023
venue cv US11633436B2
kind cv other
first author cv Kenny

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2023 Complete integration of carbene-transfer chemistry into biosynthesis. Nature article journal CV OA GS

CV span

lines 227–231 · CV · published

227107. Huang, Jing; Quest, Andrew; Cruz-Morales, Pablo; Deng, Kai; Pereira, Jose H.; Van Cura, Devon;228Kakumanu, Ramu; Baidoo, Edward E. K.; Dan, Qingyun; Chen, Yan; Petzold, Christopher J.; Northen,229Trent R.; Adams, Paul D.; Clark, Douglas S.; Balskus, Emily P.; Hartwig, John F.; Mukhopadhyay,230Aindrila; Keasling, Jay D. “Complete integration of carbene-transfer chemistry into231biosynthesis.” Nature 2023, 617, 403–408.

Institution fields

Peer reviewed
yes
First author
Huang
Co-authors
Huang, Jing; Quest, Andrew; Cruz-Morales, Pablo; Deng, Kai; Pereira, Jose H.; Van Cura, Devon; Kakumanu, Ramu; Baidoo, Edward E. K.; Dan, Qingyun; Chen, Yan; Petzold, Christopher J.; Northen, Trent R.; Adams, Paul D.; Clark, Douglas S.; Balskus, Emily P.; Hartwig, John F.; Mukhopadhyay, Aindrila; Keasling, Jay D.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Complete integration of carbene-transfer chemistry into biosynthesis.Complete integration of carbene-transfer chemistry into biosynthesis
year cv 20232023
venue crossref NatureNature
kind cv articlearticle
DOI crossref 10.1038/s41586-023-06027-210.1038/s41586-023-06027-2
first author openalex HuangHuang

Citations

OpenAlex
72
Scholar
none
DOI
10.1038/s41586-023-06027-2
OpenAlex
W4367848947

Match decisions

  • doi merged · 1.00 · Run 18
2023 Discovery of the Azaserine Biosynthetic Pathway Uncovers a Biological Route for α-Diazoester Production. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 223–225 · CV · published

223108. Van Cura, Devon; Ng, Tai L.; Huang, Jing; *Hager, Harry; Hartwig, John F.; Keasling, Jay224D.; Balskus, Emily P. “Discovery of the Azaserine Biosynthetic Pathway Uncovers a Biological Route225for α-Diazoester Production.” Angew. Chem. Intl. Ed. 2023, 62, e202304646

Institution fields

Peer reviewed
yes
First author
Van Cura
Co-authors
Van Cura, Devon; Ng, Tai L.; Huang, Jing; Hager, Harry; Hartwig, John F.; Keasling, Jay D.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Discovery of the Azaserine Biosynthetic Pathway Uncovers a Biological Route for α-Diazoester Production.Discovery of the Azaserine Biosynthetic Pathway Uncovers a Biological Route for α‐Diazoester ProductionDiscovery of the Azaserine Biosynthetic Pathway Uncovers a Biological Route for α‐Diazoester Production
year cv 202320232023
venue crossref Angew. Chem. Intl. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20230464610.1002/anie.20230464610.1002/ange.202304646
first author openalex CuraVan CuraVan Cura

Also recorded as

  • W4375864294 (DOI 10.1002/ange.202304646) · same title · 2023 Discovery of the Azaserine Biosynthetic Pathway Uncovers a Biological Route for α‐Diazoester Production

Citations

OpenAlex
50
Scholar
none
DOI
10.1002/anie.202304646
OpenAlex
W4375850397

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2023 Extracellular vesicles of the Gram-positive gut symbiont Bifidobacterium longum induce immune-modulatory, anti-inflammatory effects. npj Biofilms and Microbiomes article journal CV OA GS

CV span

lines 217–221 · CV · published

217109. Mandelbaum, Noa; Zhang, Lihan; Carasso, Shaqed; Ziv, Tamar; Lifshiz-Simon, Sapir; Davidovich,218Irina; Luz, Ishai; Berinstein, Elliot; Gefen, Tal; Cooks, Tomer; Talmon, Yeshayahu; Balskus, Emily P.;219Geva-Zatorsky, Naama. “Extracellular vesicles of the Gram-positive gut symbiont Bifidobacterium220longum induce immune-modulatory, anti-inflammatory effects.” NPJ Biofilms and Microbiomes 2023, 9,22130.

Institution fields

Peer reviewed
yes
First author
Mandelbaum
Co-authors
Mandelbaum, Noa; Zhang, Lihan; Carasso, Shaqed; Ziv, Tamar; Lifshiz-Simon, Sapir; Davidovich, Irina; Luz, Ishai; Berinstein, Elliot; Gefen, Tal; Cooks, Tomer; Talmon, Yeshayahu; Balskus, Emily P.; Geva-Zatorsky, Naama
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Extracellular vesicles of the Gram-positive gut symbiont Bifidobacterium longum induce immune-modulatory, anti-inflammatory effects.Extracellular vesicles of the Gram-positive gut symbiont Bifidobacterium longum induce immune-modulatory, anti-inflammatory effects
year cv 20232023
venue crossref NPJ Biofilms and Microbiomesnpj Biofilms and Microbiomesnpj Biofilms and Microbiomes
kind cv articlearticle
DOI crossref 10.1038/s41522-023-00400-910.1038/s41522-023-00400-9
first author openalex MandelbaumMandelbaum

Citations

OpenAlex
89
Scholar
none
DOI
10.1038/s41522-023-00400-9
OpenAlex
W4379259603

Match decisions

  • doi merged · 1.00 · Run 18
2023 Gut microbial metabolism of 5-ASA diminishes its clinical efficacy in inflammatory bowel disease. Nature Medicine article journal CV OA GS

CV span

lines 237–242 · CV · published

237105. Mehta, Raaj S.; Mayers, Jared R.; Zhang, Yancong; Bhosle, Amrisha; Glasser, Nathaniel R.;238Nguyen, Long H.; Ma, Wenjie; Bae, Sena; Branck, Tobyn; Song, Kijun; Sebastian, Luke; Avila Pacheco,239Julian; Seo, Hyuk-Soo; Clish, Clary; Dhe-Paganon, Sirano; Ananthakrishnan, Ashwin N.; Franzosa, Eric240A.; Balskus, Emily P.; Chan, Andrew T.; Huttenhower, Curtis. “Gut microbial metabolism of 5-ASA241diminishes its clinical efficacy in inflammatory bowel disease.” Nat. Med. 2023, 29, 700–709. Co-242coresponding author.

Institution fields

Peer reviewed
yes
First author
Mehta
Co-authors
Mehta, Raaj S.; Mayers, Jared R.; Zhang, Yancong; Bhosle, Amrisha; Glasser, Nathaniel R.; Nguyen, Long H.; Ma, Wenjie; Bae, Sena; Branck, Tobyn; Song, Kijun; Sebastian, Luke; Avila Pacheco, Julian; Seo, Hyuk-Soo; Clish, Clary; Dhe-Paganon, Sirano; Ananthakrishnan, Ashwin N.; Franzosa, Eric A.; Balskus, Emily P.; Chan, Andrew T.; Huttenhower, Curtis
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Gut microbial metabolism of 5-ASA diminishes its clinical efficacy in inflammatory bowel disease.Gut microbial metabolism of 5-ASA diminishes its clinical efficacy in inflammatory bowel disease
year cv 20232023
venue crossref Nat. Med.Nature MedicineNature Medicine
kind cv articlearticle
DOI crossref 10.1038/s41591-023-02217-710.1038/s41591-023-02217-7
first author openalex MehtaMehta

Citations

OpenAlex
165
Scholar
none
DOI
10.1038/s41591-023-02217-7
OpenAlex
W4321611584

Match decisions

  • doi merged · 1.00 · Run 18
2023 Mapping the T cell repertoire to a complex gut bacterial community. Nature article journal CV OA GS

CV span

lines 212–215 · CV · published

212110. Nagashima, Kazuki; Zhao, Aishan; Atabakhsh, Katayoon; Bae, Minwoo; Blum, Jamie E.; Weakley,213Allison; Jain, Sunit; Meng, Xiandong; Cheng, Alice G.; Wang, Min; Higginbottom, Steven; Dimas, Alex;214Murugkar, Pallavi; Sattely, Elizabeth S.; Moon, James J.; Balskus, Emily P.; Fischbach, Michael A.215“Mapping the T cell repertoire to a complex gut bacterial community.” Nature 2023, 621, 162–170.

Institution fields

Peer reviewed
yes
First author
Nagashima
Co-authors
Nagashima, Kazuki; Zhao, Aishan; Atabakhsh, Katayoon; Bae, Minwoo; Blum, Jamie E.; Weakley, Allison; Jain, Sunit; Meng, Xiandong; Cheng, Alice G.; Wang, Min; Higginbottom, Steven; Dimas, Alex; Murugkar, Pallavi; Sattely, Elizabeth S.; Moon, James J.; Balskus, Emily P.; Fischbach, Michael A.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Mapping the T cell repertoire to a complex gut bacterial community.Mapping the T cell repertoire to a complex gut bacterial community
year cv 20232023
venue crossref NatureNature
kind cv articlearticle
DOI crossref 10.1038/s41586-023-06431-810.1038/s41586-023-06431-8
first author openalex NagashimaNagashima

Citations

OpenAlex
81
Scholar
none
DOI
10.1038/s41586-023-06431-8
OpenAlex
W4385878277

Match decisions

  • doi merged · 1.00 · Run 18
2023 Methods and compositions relating to ClbP inhibition US20230190775A1 other CV OA GS

CV span

lines 651–652 · CV · published

6516. Volpe, Matthew R.; Balskus, Emily P. Methods and compositions relating to ClbP inhibition.652US20230190775A1, June 22, 2023

Institution fields

Peer reviewed
none
First author
Volpe
Co-authors
Volpe, Matthew R.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Methods and compositions relating to ClbP inhibition
year cv 2023
venue cv US20230190775A1
kind cv other
first author cv Volpe

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2023 Structural basis of colibactin activation by the ClbP peptidase. Nature Chemical Biology article journal CV OA GS

CV span

lines 244–246 · CV · published

244104. Velilla, José A.; Volpe, Matthew R.; Kenney, Grace E.; Walsh Jr, Richard M.; Balskus, Emily P.;245Gaudet, Rachelle. “Structural basis of colibactin activation by the ClbP peptidase.” Nat. Chem. Biol. 2023,24619, 151–158. Co-corresponding author.

Institution fields

Peer reviewed
yes
First author
Velilla
Co-authors
Velilla, José A.; Volpe, Matthew R.; Kenney, Grace E.; Walsh Jr, Richard M.; Balskus, Emily P.; Gaudet, Rachelle
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Structural basis of colibactin activation by the ClbP peptidase.Structural basis of colibactin activation by the ClbP peptidase
year cv 20232022
venue crossref Nat. Chem. Biol.Nature Chemical BiologyNature Chemical Biology
kind cv articlearticle
DOI crossref 10.1038/s41589-022-01142-z10.1038/s41589-022-01142-z
first author openalex VelillaVelilla

Citations

OpenAlex
30
Scholar
none
DOI
10.1038/s41589-022-01142-z
OpenAlex
W4306411918

Match decisions

  • doi merged · 1.00 · Run 18
2023 Targeting the human gut microbiome with small-molecule inhibitors. Nature Reviews Chemistry review journal CV OA GS

CV span

lines 233–235 · CV · published

233106. Woo, Amelia Y. M.; Aguilar Ramos, Miguel A.; Narayan, Rohan; Richards-Corke, Khyle C.; Wang,234Michelle L.; Sandoval-Espinola, Walter J.; Balskus, Emily P. “Targeting the human gut microbiome with235small-molecule inhibitors.” Nat. Rev. Chem. 2023, 7, 319–339. Review article.

Institution fields

Peer reviewed
yes
First author
Woo
Co-authors
Woo, Amelia Y. M.; Aguilar Ramos, Miguel A.; Narayan, Rohan; Richards-Corke, Khyle C.; Wang, Michelle L.; Sandoval-Espinola, Walter J.; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Targeting the human gut microbiome with small-molecule inhibitors.Targeting the human gut microbiome with small-molecule inhibitors
year cv 20232023
venue crossref Nat. Rev. Chem.Nature Reviews ChemistryNature Reviews Chemistry
kind cv reviewreview
DOI crossref 10.1038/s41570-023-00471-410.1038/s41570-023-00471-4
first author openalex WooWoo

Citations

OpenAlex
44
Scholar
none
DOI
10.1038/s41570-023-00471-4
OpenAlex
W4366277385

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2022 Biosynthesis of the unusual carbon skeleton of nocuolin A. ACS Chemical Biology article journal CV OA GS

CV span

lines 262–264 · CV · published

262100. Martins, Teresa P.; Glasser, Nathaniel R.; Kountz, Duncan J.; Oliveira, Paulo; Balskus, Emily P.;263Leão, Pedro N. “Biosynthesis of the unusual carbon skeleton of nocuolin A.” ACS Chem. Bio. 2022, 17,2642528–2537.

Institution fields

Peer reviewed
yes
First author
Martins
Co-authors
Martins, Teresa P.; Glasser, Nathaniel R.; Kountz, Duncan J.; Oliveira, Paulo; Balskus, Emily P.; Leão, Pedro N.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Biosynthesis of the unusual carbon skeleton of nocuolin A.Biosynthesis of the unusual carbon skeleton of nocuolin ABiosynthesis of the Unusual Carbon Skeleton of Nocuolin A
year cv 202220222022
venue crossref ACS Chem. Bio.ChemRxivACS Chemical BiologyACS Chemical Biology
kind cv articleworking_paperarticle
DOI crossref 10.1021/acschembio.2c0046410.26434/chemrxiv-2022-jv5n710.1021/acschembio.2c00464
preprint DOI openalex 10.26434/chemrxiv-2022-jv5n7
first author openalex MartinsMartinsMartins

Citations

OpenAlex
15
Scholar
none
DOI
10.1021/acschembio.2c00464
OpenAlex
W4294123216

Match decisions

  • doi merged · 1.00 · Run 18
2022 Choline metabolism inhibitors US20220380309A1 other CV OA GS

CV span

lines 645–646 · CV · published

6453. Balskus, Emily P.; Bollenbach; Maud. Choline metabolism inhibitors. US20220380309A1,646December 1, 2022.

Institution fields

Peer reviewed
none
First author
Balskus
Co-authors
Balskus, Emily P.; Bollenbach; Maud
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Choline metabolism inhibitors
year cv 2022
venue cv US20220380309A1
kind cv other
first author cv Balskus

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2022 Cysteine dependence of Lactobacillus iners is a potential therapeutic target for vaginal microbiota modulation. Nature Microbiology article journal CV OA GS needs review

CV span

lines 275–280 · CV · published

27597. Bloom, Seth M.; Mafunda, Nomfuneko A.; Woolston, Benjamin M.; Hayward, Matthew R.; Frempong,276Josephine F.; Abai, Aaron B.; Xu, Jiawu; Mitchell, Alissa, J.; Westergaard, Xavier; Hussain, Fatima, A.;277Xulu, Nondumiso; Dong, Mary; Dong, Krista L.; Gumbi, Thandeka; Ceasar, F. Xolisile; Rice, Justin K.;278Choksi, Namit; Ismail, Nasreen; Ndung'u, Thumbi; Ghebremichael, Musie S.; Relman, David A.;279Balskus, Emily P.; Mitchell, Caroline M.; Kwon, Douglas, S. “Cysteine dependence of Lactobacillus iners280is a potential therapeutic target for vaginal microbiota modulation.” Nat. Microbiol. 2022, 7, 434–450.

Institution fields

Peer reviewed
yes
First author
Bloom
Co-authors
Bloom, Seth M.; Mafunda, Nomfuneko A.; Woolston, Benjamin M.; Hayward, Matthew R.; Frempong, Josephine F.; Abai, Aaron B.; Xu, Jiawu; Mitchell, Alissa, J.; Westergaard, Xavier; Hussain, Fatima, A.; Xulu, Nondumiso; Dong, Mary; Dong, Krista L.; Gumbi, Thandeka; Ceasar, F. Xolisile; Rice, Justin K.; Choksi, Namit; Ismail, Nasreen; Ndung'u, Thumbi; Ghebremichael, Musie S.; Relman, David A.; Balskus, Emily P.; Mitchell, Caroline M.; Kwon, Douglas, S.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Cysteine dependence of Lactobacillus iners is a potential therapeutic target for vaginal microbiota modulation.Cysteine dependence of Lactobacillus iners is a potential therapeutic target for vaginal microbiota modulation
year cv 20222022
venue crossref Nat. Microbiol.Nature MicrobiologyNature Microbiology
kind cv articlearticle
DOI crossref 10.1038/s41564-022-01070-710.1038/s41564-022-01070-7
first author openalex BloomBloom

Citations

OpenAlex
117
Scholar
none
DOI
10.1038/s41564-022-01070-7
OpenAlex
W4214823714

Match decisions

  • passthrough_guard not merged · 0.99 · doi_conflict · Run 18 These records share the same title, journal, year, and DOI.
  • doi merged · 1.00 · Run 18
2022 Emerging chemical diversity and potential applications of enzymes in the DMSO reductase superfamily. Annual Review of Biochemistry review journal CV OA GS

CV span

lines 271–273 · CV · published

27198. Le, Chip C.; Bae Minwoo; *Kiamehr, Sina; Balskus, Emily P. “Emerging chemical diversity and272potential applications of enzymes in the DMSO reductase superfamily.” Ann. Rev. Biochem. 2022, 91,273475–504. Review article.

Institution fields

Peer reviewed
yes
First author
Le
Co-authors
Le, Chip C.; Bae Minwoo; Kiamehr, Sina; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Emerging chemical diversity and potential applications of enzymes in the DMSO reductase superfamily.Emerging Chemical Diversity and Potential Applications of Enzymes in the DMSO Reductase Superfamily
year cv 20222022
venue crossref Ann. Rev. Biochem.Annual Review of BiochemistryAnnual Review of Biochemistry
kind cv reviewreview
DOI crossref 10.1146/annurev-biochem-032620-11080410.1146/annurev-biochem-032620-110804
first author openalex LeLe

Citations

OpenAlex
20
Scholar
none
DOI
10.1146/annurev-biochem-032620-110804
OpenAlex
W4221048506

Match decisions

  • doi merged · 1.00 · Run 18
2022 Genetic manipulation of the human gut bacterium Eggerthella lenta reveals a widespread family of transcriptional regulators Nature Communications article journal CV OA GS

CV span

lines 253–256 · CV · published

253102. Dong, Xueyang; Guthrie, Ben G. H.; Alexander, Margaret; Noecker, Cecilia; Ramirez, Lorenzo;254Glasser, Nathaniel R.; Turnbaugh, Peter J.; Balskus, Emily P. “Genetic manipulation of the human gut255bacterium Eggerthella lenta reveals a widespread family of transcriptional regulators” Nat. Commun.2562022, 13, 7624.

Institution fields

Peer reviewed
yes
First author
Dong
Co-authors
Dong, Xueyang; Guthrie, Ben G. H.; Alexander, Margaret; Noecker, Cecilia; Ramirez, Lorenzo; Glasser, Nathaniel R.; Turnbaugh, Peter J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Genetic manipulation of the human gut bacterium Eggerthella lenta reveals a widespread family of transcriptional regulatorsGenetic manipulation of the human gut bacterium Eggerthella lenta reveals a widespread family of transcriptional regulators
year cv 20222022
venue crossref Nat. Commun.Nature CommunicationsNature Communications
kind cv articlearticle
DOI crossref 10.1038/s41467-022-33576-310.1038/s41467-022-33576-3
first author openalex DongDong

Citations

OpenAlex
48
Scholar
none
DOI
10.1038/s41467-022-33576-3
OpenAlex
W4311677680

Match decisions

  • doi merged · 1.00 · Run 18
2022 Mechanistic Studies of a Skatole-Forming Glycyl Radical Enzyme Suggest Reaction Initiation via Hydrogen Atom Transfer. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 258–260 · CV · published

258101. Fu, Beverly; Nazemi, Azadeh; Levin, Benjamin J.; Yang, Zhongyue; Kulik, Heather J.; Balskus,259Emily P. “Mechanistic Studies of a Skatole-Forming Glycyl Radical Enzyme Suggest Reaction Initiation260via Hydrogen Atom Transfer.” J. Am. Chem. Soc. 2022, 144, 11110–11119.

Institution fields

Peer reviewed
yes
First author
Fu
Co-authors
Fu, Beverly; Nazemi, Azadeh; Levin, Benjamin J.; Yang, Zhongyue; Kulik, Heather J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Mechanistic Studies of a Skatole-Forming Glycyl Radical Enzyme Suggest Reaction Initiation via Hydrogen Atom Transfer.Mechanistic Studies of a Skatole-Forming Glycyl Radical Enzyme Suggest Reaction Initiation via Hydrogen Atom Transfer
year cv 20222022
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.1c1358010.1021/jacs.1c13580
first author openalex FuFu

Citations

OpenAlex
15
Scholar
none
DOI
10.1021/jacs.1c13580
OpenAlex
W4282961126

Match decisions

  • doi merged · 1.00 · Run 18
2022 Methods and compositions for modulation of an interspecies gut bacterial pathway for levodopa metabolism US20220226269A1 other CV OA GS

CV span

lines 643–644 · CV · published

6432. Maini-Rekdal, V. Balskus, Emily P. Methods and compositions for modulation of an interspecies644gut bacterial pathway for levodopa metabolism. US20220226269A1, July 21, 2022.

Institution fields

Peer reviewed
none
First author
Maini-Rekdal
Co-authors
Maini-Rekdal, V.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Methods and compositions for modulation of an interspecies gut bacterial pathway for levodopa metabolism
year cv 2022
venue cv US20220226269A1
kind cv other
first author cv Maini-Rekdal

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2022 Structural basis for an unprecedented enzymatic alkylation in cylindrocyclophane biosynthesis. eLife article journal CV OA GS

CV span

lines 282–284 · CV · published

28296. Braffman, Nathaniel R.; Ruskoski, Theresa B.; Davis, Katherine M.; Glasser, Nathaniel R.; *Johnson,283Cassidy; Okafor, C. Denise; Boal, Amie, K.; Balskus, Emily P. “Structural basis for an unprecedented284enzymatic alkylation in cylindrocyclophane biosynthesis.” Elife 2022, 11, e75761.

Institution fields

Peer reviewed
yes
First author
Braffman
Co-authors
Braffman, Nathaniel R.; Ruskoski, Theresa B.; Davis, Katherine M.; Glasser, Nathaniel R.; Johnson, Cassidy; Okafor, C. Denise; Boal, Amie, K.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Structural basis for an unprecedented enzymatic alkylation in cylindrocyclophane biosynthesis.Structural Basis for an Unprecedented Enzymatic Alkylation in Cylindrocyclophane BiosynthesisStructural basis for an unprecedented enzymatic alkylation in cylindrocyclophane biosynthesis
year cv 202220212022
venue crossref ElifebioRxiv (Cold Spring Harbor Laboratory)eLifeeLife
kind cv articleworking_paperarticle
DOI crossref 10.7554/elife.7576110.1101/2021.12.02.47090110.7554/elife.75761
preprint DOI openalex 10.1101/2021.12.02.470901
first author openalex BraffmanBraffmanBraffman

Citations

OpenAlex
15
Scholar
none
OpenAlex with related records
16
DOI
10.7554/elife.75761
OpenAlex
W4220774597

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2022 The bacterial toxin colibactin triggers prophage induction Nature article journal CV OA GS

CV span

lines 286–287 · CV · published

28695. Silpe, Justin E.; Wong, Joel W. H.; Owen, Siân V.; Baym, Michael; Balskus, Emily P. “The bacterial287toxin colibactin triggers prophage induction” Nature 2022, 603, 315–320.

Institution fields

Peer reviewed
yes
First author
Silpe
Co-authors
Silpe, Justin E.; Wong, Joel W. H.; Owen, Siân V.; Baym, Michael; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The bacterial toxin colibactin triggers prophage inductionThe bacterial toxin colibactin triggers prophage induction
year cv 20222022
venue crossref NatureNature
kind cv articlearticle
DOI crossref 10.1038/s41586-022-04444-310.1038/s41586-022-04444-3
first author openalex SilpeSilpe

Citations

OpenAlex
131
Scholar
none
DOI
10.1038/s41586-022-04444-3
OpenAlex
W4213096651

Match decisions

  • doi merged · 1.00 · Run 18
2022 The Stickland reaction precursor trans-4-hydroxy-L-proline differentially impacts the metabolism of Clostridioides difficile and commensal Clostridia. mSphere article journal CV OA GS

CV span

lines 266–269 · CV · published

26699. Reed, Amber D; Fletcher, Joshua R.; Huang, Yolanda Y.; Thanissery, Rajani; Rivera, Alissa J.;267Parsons, Ruth J.; Stewart, Alison K.; Kountz, Duncan J.; Shen, Aimee; Balskus, Emily P.; Theriot, Casey268M. “The Stickland reaction precursor trans-4-hydroxy-L-proline differentially impacts the metabolism of269Clostridioides difficile and commensal Clostridia.” mSphere 2022, 27, e0092621.

Institution fields

Peer reviewed
yes
First author
Reed
Co-authors
Reed, Amber D; Fletcher, Joshua R.; Huang, Yolanda Y.; Thanissery, Rajani; Rivera, Alissa J.; Parsons, Ruth J.; Stewart, Alison K.; Kountz, Duncan J.; Shen, Aimee; Balskus, Emily P.; Theriot, Casey M.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The Stickland reaction precursor trans-4-hydroxy-L-proline differentially impacts the metabolism of Clostridioides difficile and commensal Clostridia.The Stickland Reaction Precursor trans -4-Hydroxy- l -Proline Differentially Impacts the Metabolism of Clostridioides difficile and Commensal Clostridia
year cv 20222022
venue crossref mSpheremSphere
kind cv articlearticle
DOI crossref 10.1128/msphere.00926-2110.1128/msphere.00926-21
first author openalex ReedReed

Citations

OpenAlex
31
Scholar
none
DOI
10.1128/msphere.00926-21
OpenAlex
W4220715588

Match decisions

  • doi merged · 1.00 · Run 18
2021 Distribution and diversity of dimetal-carboxylate halogenases in cyanobacteria BMC Genomics article journal CV OA GS

CV span

lines 289–291 · CV · published

28994. Eusebio, Nadia; Rego, Adriana; Glasser, Nathaniel R.; Castelo-Branco, Raquel; Balskus, Emily P.;290Leão, Pedro N. “Distribution and diversity of dimetal-carboxylate halogenases in cyanobacteria” BMC291Genomics 2021, 22, 633.

Institution fields

Peer reviewed
yes
First author
Eusebio
Co-authors
Eusebio, Nadia; Rego, Adriana; Glasser, Nathaniel R.; Castelo-Branco, Raquel; Balskus, Emily P.; Leão, Pedro N.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Distribution and diversity of dimetal-carboxylate halogenases in cyanobacteriaDistribution and diversity of dimetal-carboxylate halogenases in cyanobacteriaDistribution and diversity of dimetal-carboxylate halogenases in cyanobacteria
year cv 202120212021
venue crossref BMC GenomicsbioRxiv (Cold Spring Harbor Laboratory)BMC Genomics
kind cv articleworking_paperarticle
DOI crossref 10.1186/s12864-021-07939-x10.1101/2021.01.05.42544810.1186/s12864-021-07939-x
preprint DOI openalex 10.1101/2021.01.05.425448
first author openalex EusebioEusébioEusébio

Citations

OpenAlex
16
Scholar
none
OpenAlex with related records
18
DOI
10.1186/s12864-021-07939-x
OpenAlex
W3196343499

Match decisions

  • doi merged · 1.00 · Run 18
2021 Elucidation of an anaerobic pathway for metabolism of L-carnitine derived γ-butyrobetaine to trimethylamine in human gut bacteria. Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 293–295 · CV · published

29393. Rajakovich, Lauren J.; Fu, Beverly; Bollenbach, Maud; Balskus, Emily P. “Elucidation of an294anaerobic pathway for metabolism of L-carnitine derived γ-butyrobetaine to trimethylamine in human gut295bacteria.” Proc. Natl. Acad. Sci. U.S.A. 2021, 18, e2101498118.

Institution fields

Peer reviewed
yes
First author
Rajakovich
Co-authors
Rajakovich, Lauren J.; Fu, Beverly; Bollenbach, Maud; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Elucidation of an anaerobic pathway for metabolism of L-carnitine derived γ-butyrobetaine to trimethylamine in human gut bacteria.Elucidation of an anaerobic pathway for metabolism of L-carnitine-derived γ-butyrobetaine to trimethylamine in human gut bacteriaElucidation of an anaerobic pathway for metabolism of l -carnitine–derived γ-butyrobetaine to trimethylamine in human gut bacteria
year cv 202120212021
venue crossref Proc. Natl. Acad. Sci. U.S.A.bioRxiv (Cold Spring Harbor Laboratory)Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articleworking_paperarticle
DOI crossref 10.1073/pnas.210149811810.1101/2021.01.25.42810910.1073/pnas.2101498118
preprint DOI openalex 10.1101/2021.01.25.428109
first author openalex RajakovichRajakovichRajakovich

Citations

OpenAlex
73
Scholar
none
OpenAlex with related records
75
DOI
10.1073/pnas.2101498118
OpenAlex
W3191012379

Match decisions

  • doi merged · 1.00 · Run 18
2021 Extension of diagnostic fragmentation filtering for automated discovery in DNA adductomics. Analytical Chemistry article journal CV OA GS

CV span

lines 305–307 · CV · published

30590. Murray, Kevin J.; Carlson, Erik S.; Stornetta, Alessia; Balskus, Emily P.; Villalta, Peter W.; Balbo,306Silvia. “Extension of diagnostic fragmentation filtering for automated discovery in DNA adductomics.”307Anal. Chem. 2021, 93, 5754–5762.

Institution fields

Peer reviewed
yes
First author
Murray
Co-authors
Murray, Kevin J.; Carlson, Erik S.; Stornetta, Alessia; Balskus, Emily P.; Villalta, Peter W.; Balbo, Silvia
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Extension of diagnostic fragmentation filtering for automated discovery in DNA adductomics.Extension of Diagnostic Fragmentation Filtering for Automated Discovery in DNA Adductomics
year cv 20212021
venue crossref Anal. Chem.Analytical ChemistryAnalytical Chemistry
kind cv articlearticle
DOI crossref 10.1021/acs.analchem.0c0489510.1021/acs.analchem.0c04895
first author openalex MurrayMurray

Citations

OpenAlex
23
Scholar
none
DOI
10.1021/acs.analchem.0c04895
OpenAlex
W3147065452

Match decisions

  • doi merged · 1.00 · Run 18
2021 Leveraging microbial genomes and genomic context for chemical discovery. Accounts of Chemical Research article journal CV OA GS

CV span

lines 297–298 · CV · published

29792. Kountz, Duncan J.; Balskus, Emily P. “Leveraging microbial genomes and genomic context for298chemical discovery.” Acc. Chem. Res. 2021, 54, 2788–2797.

Institution fields

Peer reviewed
yes
First author
Kountz
Co-authors
Kountz, Duncan J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Leveraging microbial genomes and genomic context for chemical discovery.Leveraging Microbial Genomes and Genomic Context for Chemical Discovery
year cv 20212021
venue crossref Acc. Chem. Res.Accounts of Chemical ResearchAccounts of Chemical Research
kind cv articlearticle
DOI crossref 10.1021/acs.accounts.1c0010010.1021/acs.accounts.1c00100
first author openalex KountzKountz

Citations

OpenAlex
24
Scholar
none
DOI
10.1021/acs.accounts.1c00100
OpenAlex
W3164078851

Match decisions

  • doi merged · 1.00 · Run 18
2021 Methods and compositions relating to genotoxin colibactin US20220033372A1 other CV OA GS

CV span

lines 641–642 · CV · published

6411. Volpe, Matthew R.; Wilson, Matthew R.; Balskus, Emily P. Methods and compositions relating642to genotoxin colibactin. US20220033372A1, June 22, 2021.

Institution fields

Peer reviewed
none
First author
Volpe
Co-authors
Volpe, Matthew R.; Wilson, Matthew R.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Methods and compositions relating to genotoxin colibactin
year cv 2021
venue cv US20220033372A1
kind cv other
first author cv Volpe

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2021 Molecular basis of C–S bond cleavage in the glycyl radical enzyme isethionate sulfite-lyase. Cell Chemical Biology article journal CV OA GS

CV span

lines 300–303 · CV · published

30091. Dawson, Christopher D.; Irwin, Stephania M.; Backman, Lindsey R. F.; Le, Chip; Vennelakanti,301Vyshnavi; Yang, Zhongyue; Kulik, Heather J.; Drennan, Catherine L.; Balskus, Emily P. “Molecular302basis of C–S bond cleavage in the glycyl radical enzyme isethionate sulfite-lyase.” Cell Chem. Biol. 2021,30328, 1–14.

Institution fields

Peer reviewed
yes
First author
Dawson
Co-authors
Dawson, Christopher D.; Irwin, Stephania M.; Backman, Lindsey R. F.; Le, Chip; Vennelakanti, Vyshnavi; Yang, Zhongyue; Kulik, Heather J.; Drennan, Catherine L.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Molecular basis of C–S bond cleavage in the glycyl radical enzyme isethionate sulfite-lyase.Molecular basis of C-S bond cleavage in the glycyl radical enzyme isethionate sulfite-lyaseMolecular Basis of C–S Bond Cleavage in the Glycyl Radical Enzyme Isethionate Sulfite-Lyase
year cv 202120212020
venue crossref Cell Chem. Biol.Cell chemical biologySSRN Electronic JournalCell Chemical Biology
kind cv articlearticleworking_paper
DOI crossref 10.1016/j.chembiol.2021.03.00110.1016/j.chembiol.2021.03.00110.2139/ssrn.3606780
preprint DOI openalex 10.2139/ssrn.3606780
first author openalex DawsonDawsonDawson

Citations

OpenAlex
21
Scholar
none
OpenAlex with related records
22
DOI
10.1016/j.chembiol.2021.03.001
OpenAlex
W3144270981

Match decisions

  • doi merged · 1.00 · Run 18
2021 Structure and assembly of the diiron cofactor in the heme-oxygenase-like domain of the N-nitrosourea-producing enzyme SznF. Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 309–311 · CV · published

30989. McBride, Molly J.; Pope, Sarah R.; Hu, Kai; Okafor, C. Denise; Balskus, Emily P.; Bollinger, Jr., J.310Martin; Boal, Amie K. “Structure and assembly of the diiron cofactor in the heme-oxygenase-like domain311of the N-nitrosourea-producing enzyme SznF.” Proc. Natl. Acad. Sci. U.S.A. 2021, 118, e2015931118.

Institution fields

Peer reviewed
yes
First author
McBride
Co-authors
McBride, Molly J.; Pope, Sarah R.; Hu, Kai; Okafor, C. Denise; Balskus, Emily P.; Bollinger, Jr., J. Martin; Boal, Amie K.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Structure and assembly of the diiron cofactor in the heme-oxygenase-like domain of the N-nitrosourea-producing enzyme SznF.Structure and assembly of the diiron cofactor in the heme-oxygenase-like domain of the N -nitrosourea-producing enzyme SznFStructure and assembly of the diiron cofactor in the heme-oxygenase–like domain of the N -nitrosourea–producing enzyme SznF
year cv 202120202021
venue crossref Proc. Natl. Acad. Sci. U.S.A.bioRxiv (Cold Spring Harbor Laboratory)Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articleworking_paperarticle
DOI crossref 10.1073/pnas.201593111810.1101/2020.07.29.22770210.1073/pnas.2015931118
preprint DOI openalex 10.1101/2020.07.29.227702
first author openalex McBrideMcBrideMcBride

Citations

OpenAlex
85
Scholar
none
OpenAlex with related records
90
DOI
10.1073/pnas.2015931118
OpenAlex
W3124154166

Match decisions

  • doi merged · 1.00 · Run 18
2020 A genomic toolkit for the mechanistic dissection of intractable human gut bacteria. Cell Host & Microbe article journal CV OA GS

CV span

lines 331–335 · CV · published

33184. Bisanz, Jordan E.; Soto-Perez, Paola; Noecker, Cecilia; Aksenov, Alexander A.; Lam, Kathy N.;332Kenney, Grace E.; Bess, Elizabeth N.; Haiser, Henry J.; Kyaw, Than S.; Yu, Feiqiao B.; Rekdal, Vayu333M.; Ha, Connie, W. Y.; Devkota, Suzanne; Balskus, Emily P.; Dorrestein, Pieter C.; Allen-Vercoe,334Emma; Turnbaugh. Peter J. “A genomic toolkit for the mechanistic dissection of intractable human gut335bacteria.” Cell Host Microbe 2020, 27, 1001–1013.

Institution fields

Peer reviewed
yes
First author
Bisanz
Co-authors
Bisanz, Jordan E.; Soto-Perez, Paola; Noecker, Cecilia; Aksenov, Alexander A.; Lam, Kathy N.; Kenney, Grace E.; Bess, Elizabeth N.; Haiser, Henry J.; Kyaw, Than S.; Yu, Feiqiao B.; Rekdal, Vayu M.; Ha, Connie, W. Y.; Devkota, Suzanne; Balskus, Emily P.; Dorrestein, Pieter C.; Allen-Vercoe, Emma; Turnbaugh. Peter J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A genomic toolkit for the mechanistic dissection of intractable human gut bacteria.A Genomic Toolkit for the Mechanistic Dissection of Intractable Human Gut Bacteria
year cv 20202020
venue crossref Cell Host MicrobeCell Host & MicrobeCell Host & Microbe
kind cv articlearticle
DOI crossref 10.1016/j.chom.2020.04.00610.1016/j.chom.2020.04.006
first author openalex BisanzBisanz

Citations

OpenAlex
69
Scholar
none
DOI
10.1016/j.chom.2020.04.006
OpenAlex
W3017735462

Match decisions

  • doi merged · 1.00 · Run 18
2020 A peroxodiiron(III/III) intermediate mediating both N-hydroxylation steps in biosynthesis of the N-nitrosourea pharmacophore of streptozotocin by the multi-domain metalloenzyme SznF. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 316–320 · CV · published

31687. McBride, Molly J.; Sil, Debangsu; Ng, Tai L.; Crooke, Anne Marie; Kenney, Grace E.; Tysoe, Christina317R.; Zhang, Bo; Balskus, Emily P.; Boal, Amie K.; Krebs, Carsten; Bollinger Jr., J. Martin. “A318peroxodiiron(III/III) intermediate mediating both N-hydroxylation steps in biosynthesis of the N-319nitrosourea pharmacophore of streptozotocin by the multi-domain metalloenzyme SznF.” J. Am. Chem320Soc. 2020, 142, 11818–11828. Co-corresponding author.

Institution fields

Peer reviewed
yes
First author
McBride
Co-authors
McBride, Molly J.; Sil, Debangsu; Ng, Tai L.; Crooke, Anne Marie; Kenney, Grace E.; Tysoe, Christina R.; Zhang, Bo; Balskus, Emily P.; Boal, Amie K.; Krebs, Carsten; Bollinger Jr., J. Martin
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A peroxodiiron(III/III) intermediate mediating both N-hydroxylation steps in biosynthesis of the N-nitrosourea pharmacophore of streptozotocin by the multi-domain metalloenzyme SznF.A Peroxodiiron(III/III) Intermediate Mediating Both N -Hydroxylation Steps in Biosynthesis of the N -Nitrosourea Pharmacophore of Streptozotocin by the Multi-domain Metalloenzyme SznF
year cv 20202020
venue crossref J. Am. Chem Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.0c0343110.1021/jacs.0c03431
first author openalex McBrideMcBride

Citations

OpenAlex
82
Scholar
none
DOI
10.1021/jacs.0c03431
OpenAlex
W3033414899

Match decisions

  • doi merged · 1.00 · Run 18
2020 A widely distributed metalloenzyme class enables gut microbial metabolism of host- and diet-derived catechols. eLife article journal CV OA GS

CV span

lines 346–348 · CV · published

34681. Maini Rekdal, Vayu; Bernardino, Paola. N; Luescher, Michael U.; *Kiamehr, Sina; Turnbaugh, Peter347J.; Bess, Elizabeth N.; Balskus, Emily P. “A widely distributed metalloenzyme class enables gut348microbial metabolism of host- and diet-derived catechols.” eLife 2020, 9, e50845.

Institution fields

Peer reviewed
yes
First author
Maini Rekdal
Co-authors
Maini Rekdal, Vayu; Bernardino, Paola. N; Luescher, Michael U.; *Kiamehr, Sina; Turnbaugh, Peter J.; Bess, Elizabeth N.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv A widely distributed metalloenzyme class enables gut microbial metabolism of host- and diet-derived catechols.A widely distributed metalloenzyme class enables gut microbial metabolism of host- and diet-derived catecholsA widely distributed metalloenzyme class enables gut microbial metabolism of host- and diet-derived catechols
year cv 202020192020
venue crossref eLifebioRxiv (Cold Spring Harbor Laboratory)eLife
kind cv articleworking_paperarticle
DOI crossref 10.7554/elife.5084510.1101/72535810.7554/elife.50845
preprint DOI openalex 10.1101/725358
first author openalex RekdalRekdalRekdal

Citations

OpenAlex
77
Scholar
none
OpenAlex with related records
84
DOI
10.7554/elife.50845
OpenAlex
W3005884664

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2020 Cholesterol metabolism by uncultured human gut bacteria influences host cholesterol level. Cell Host & Microbe article journal CV OA GS

CV span

lines 322–325 · CV · published

32286. Kenny, Douglas J., Plichta, Damian R.; Shungin, Dimitry; Koppel, Nitzan; Hall, A. Brantley; Fu,323Beverly; Vasan, Ramachandran S.; Shaw, Stanley Y.; Vlamakis, Hera; Balskus, Emily P.; Xavier,324Ramnik J. “Cholesterol metabolism by uncultured human gut bacteria influences host cholesterol level.”325Cell Host Microbe 2020, 28, 245–257. Co-corresponding author.

Institution fields

Peer reviewed
yes
First author
Kenny
Co-authors
Kenny, Douglas J.; Plichta, Damian R.; Shungin, Dimitry; Koppel, Nitzan; Hall, A. Brantley; Fu, Beverly; Vasan, Ramachandran S.; Shaw, Stanley Y.; Vlamakis, Hera; Balskus, Emily P.; Xavier, Ramnik J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Cholesterol metabolism by uncultured human gut bacteria influences host cholesterol level.Cholesterol Metabolism by Uncultured Human Gut Bacteria Influences Host Cholesterol Level
year cv 20202020
venue crossref Cell Host MicrobeCell Host & MicrobeCell Host & Microbe
kind cv articlearticle
DOI crossref 10.1016/j.chom.2020.05.01310.1016/j.chom.2020.05.013
first author openalex KennyKenny

Citations

OpenAlex
316
Scholar
none
DOI
10.1016/j.chom.2020.05.013
OpenAlex
W3035004775

Match decisions

  • doi merged · 1.00 · Run 18
2020 Deciphering human microbiota–host chemical interactions. ACS Central Science article journal CV OA GS

CV span

lines 313–314 · CV · published

31388. Silpe, Justin E.; Emily P. Balskus. “Deciphering human microbiota–host chemical interactions.” ACS314Cent. Sci. 2020, 7, 20–29. Invited perspective.

Institution fields

Peer reviewed
yes
First author
Silpe
Co-authors
Silpe, Justin E.; Emily P. Balskus
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Deciphering human microbiota–host chemical interactions.Deciphering Human Microbiota–Host Chemical Interactions
year cv 20202020
venue crossref ACS Cent. Sci.ACS Central ScienceACS Central Science
kind cv articlearticle
DOI crossref 10.1021/acscentsci.0c0103010.1021/acscentsci.0c01030
first author openalex SilpeSilpe

Citations

OpenAlex
46
Scholar
none
DOI
10.1021/acscentsci.0c01030
OpenAlex
W3110984215

Match decisions

  • doi merged · 1.00 · Run 18
2020 Discovery of a cyclic choline analog that inhibits anaerobic choline metabolism by human gut bacteria. ACS Medicinal Chemistry Letters article journal CV OA GS

CV span

lines 337–339 · CV · published

33783. Bollenbach, Maud; Ortega, Manuel; Orman, Marina; Drennan, Catherine L.; Balskus, Emily P.338“Discovery of a cyclic choline analog that inhibits anaerobic choline metabolism by human gut bacteria.”339ACS Med. Chem. Lett. 2020, 11, 1980–1985.

Institution fields

Peer reviewed
yes
First author
Bollenbach
Co-authors
Bollenbach, Maud; Ortega, Manuel; Orman, Marina; Drennan, Catherine L.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Discovery of a cyclic choline analog that inhibits anaerobic choline metabolism by human gut bacteria.Discovery of a Cyclic Choline Analog That Inhibits Anaerobic Choline Metabolism by Human Gut Bacteria
year cv 20202020
venue crossref ACS Med. Chem. Lett.ACS Medicinal Chemistry LettersACS Medicinal Chemistry Letters
kind cv articlearticle
DOI crossref 10.1021/acsmedchemlett.0c0000510.1021/acsmedchemlett.0c00005
first author openalex BollenbachBollenbach

Citations

OpenAlex
31
Scholar
none
DOI
10.1021/acsmedchemlett.0c00005
OpenAlex
W3013839954

Match decisions

  • doi merged · 1.00 · Run 18
2020 Discovery of C–C bond-forming and bond-breaking radical enzymes: enabling transformations for metabolic engineering. Current Opinion in Biotechnology article journal CV OA GS

CV span

lines 327–329 · CV · published

32785. Fu, Beverly; Balskus, Emily P. “Discovery of C–C bond-forming and bond-breaking radical enzymes:328enabling transformations for metabolic engineering.” Curr. Opin. Biotechnol. 2020, 65, 94–101. Invited329commentary.

Institution fields

Peer reviewed
yes
First author
Fu
Co-authors
Fu, Beverly; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Discovery of C–C bond-forming and bond-breaking radical enzymes: enabling transformations for metabolic engineering.Discovery of C C bond-forming and bond-breaking radical enzymes: enabling transformations for metabolic engineering
year cv 20202020
venue crossref Curr. Opin. Biotechnol.Current Opinion in BiotechnologyCurrent Opinion in Biotechnology
kind cv articlereview
DOI crossref 10.1016/j.copbio.2020.02.00310.1016/j.copbio.2020.02.003
first author openalex FuFu

Citations

OpenAlex
15
Scholar
none
DOI
10.1016/j.copbio.2020.02.003
OpenAlex
W3011522549

Match decisions

  • doi merged · 1.00 · Run 18
2020 Molecular basis for catabolism of the abundant metabolite trans-4-hydroxy-L-proline by a microbial glycyl radical enzyme. eLife article journal CV OA GS

CV span

lines 341–344 · CV · published

34182. Backman, Lindsey R. F.; Huang, Yolanda Y.; Andorfer, Mary C.; Gold, Brian; Raines, Ronald T.;342Balskus, Emily P.; Drennan, Catherine L. “Molecular basis for catabolism of the abundant metabolite343trans-4-hydroxy-L-proline by a microbial glycyl radical enzyme.” eLife 2020, 9, e51420. Co-corresponding344author.

Institution fields

Peer reviewed
yes
First author
Backman
Co-authors
Backman, Lindsey R. F.; Huang, Yolanda Y.; Andorfer, Mary C.; Gold, Brian; Raines, Ronald T.; Balskus, Emily P.; Drennan, Catherine L.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Molecular basis for catabolism of the abundant metabolite trans-4-hydroxy-L-proline by a microbial glycyl radical enzyme.Molecular basis for catabolism of the abundant metabolite trans-4-hydroxy-L-proline by a microbial glycyl radical enzyme
year cv 20202020
venue crossref eLifeeLife
kind cv articlearticle
DOI crossref 10.7554/elife.5142010.7554/elife.51420
first author openalex BackmanBackman

Citations

OpenAlex
30
Scholar
none
DOI
10.7554/elife.51420
OpenAlex
W3011494154

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2020 The L-alanosine gene cluster encodes a pathway for diazeniumdiolate biosynthesis. ChemBioChem article journal CV OA GS

CV span

lines 350–352 · CV · published

35080. Ng, Tai L.; McCallum, Monica E.; *Zheng, Christine R.; Wang, Jennifer X.; *Wu, Kelvin J. Y.; Balskus,351Emily P. “The L-alanosine gene cluster encodes a pathway for diazeniumdiolate biosynthesis.”352ChemBioChem 2020, 21, 1155–1160.

Institution fields

Peer reviewed
yes
First author
Ng
Co-authors
Ng, Tai L.; McCallum, Monica E.; *Zheng, Christine R.; Wang, Jennifer X.; *Wu, Kelvin J. Y.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The L-alanosine gene cluster encodes a pathway for diazeniumdiolate biosynthesis.The L-alanosine gene cluster encodes a pathway for diazeniumdiolate biosynthesisThe l ‐Alanosine Gene Cluster Encodes a Pathway for Diazeniumdiolate Biosynthesis
year cv 202020192019
venue crossref ChemBioChembioRxiv (Cold Spring Harbor Laboratory)ChemBioChem
kind cv articleworking_paperarticle
DOI cv 10.1002/cbic.20190056510.1002/cbic.20190056510.1101/76360710.1002/cbic.201900565
preprint DOI openalex 10.1101/763607
first author openalex NgNgNg

Citations

OpenAlex
41
Scholar
39
OpenAlex with related records
43
DOI
10.1002/cbic.201900565
OpenAlex
W2982052991

Match decisions

  • doi merged · 1.00 · Run 18
2019 A glycyl radical enzyme enables hydrogen sulfide production by the human intestinal bacterium Bilophila wadsworthia. Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 385–388 · CV · published

38571. Peck, Spencer C.; Denger, Karin; Burrichter, Anna; Irwin, Stephania M.; Balskus, Emily P.;386Schleheck, David. “A glycyl radical enzyme enables hydrogen sulfide production by the human intestinal387bacterium Bilophila wadsworthia.” Proc. Natl. Acad. Sci. USA 2019, 116, 3171–3176. Co-corresponding388author.

Institution fields

Peer reviewed
yes
First author
Peck
Co-authors
Peck, Spencer C.; Denger, Karin; Burrichter, Anna; Irwin, Stephania M.; Balskus, Emily P.; Schleheck, David
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A glycyl radical enzyme enables hydrogen sulfide production by the human intestinal bacterium Bilophila wadsworthia.A glycyl radical enzyme enables hydrogen sulfide production by the human intestinal bacterium Bilophila wadsworthia
year cv 20192019
venue crossref Proc. Natl. Acad. Sci. USAProceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articlearticle
DOI crossref 10.1073/pnas.181566111610.1073/pnas.1815661116
first author openalex PeckPeck

Citations

OpenAlex
195
Scholar
none
DOI
10.1073/pnas.1815661116
OpenAlex
W2914165558

Match decisions

  • doi merged · 1.00 · Run 18
2019 An N-nitrosating metalloenzyme constructs the pharmacophore of streptozotocin. Nature article journal CV OA GS

CV span

lines 395–396 · CV · published

39569. Ng, Tai L.; Rohac, Roman; Mitchell, Andrew J.; Boal, Amie K.; Balskus, Emily P. “An N-nitrosating396metalloenzyme constructs the pharmacophore of streptozotocin.” Nature 2019, 566, 94–99.

Institution fields

Peer reviewed
yes
First author
Ng
Co-authors
Ng, Tai L.; Rohac, Roman; Mitchell, Andrew J.; Boal, Amie K.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv An N-nitrosating metalloenzyme constructs the pharmacophore of streptozotocin.An N-nitrosating metalloenzyme constructs the pharmacophore of streptozotocin
year cv 20192019
venue crossref NatureNature
kind cv articlearticle
DOI crossref 10.1038/s41586-019-0894-z10.1038/s41586-019-0894-z
first author openalex NgNg

Citations

OpenAlex
166
Scholar
none
DOI
10.1038/s41586-019-0894-z
OpenAlex
W2912191120

Match decisions

  • doi merged · 1.00 · Run 18
2019 Biocatalytic Friedel-Crafts alkylation using a promiscuous biosynthetic enzyme. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 402–404 · CV · published

40267. Schultz, Erica E.; Braffman, Nathaniel R.; Luescher, Michael U.; *Hager, Harry H.; Balskus, Emily P.403“Biocatalytic Friedel-Crafts alkylation using a promiscuous biosynthetic enzyme.” Angew. Chem. Int. Ed.4042019, 58, 3151–3155.

Institution fields

Peer reviewed
yes
First author
Schultz
Co-authors
Schultz, Erica E.; Braffman, Nathaniel R.; Luescher, Michael U.; *Hager, Harry H.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Biocatalytic Friedel-Crafts alkylation using a promiscuous biosynthetic enzyme.Biocatalytic Friedel–Crafts Alkylation Using a Promiscuous Biosynthetic EnzymeBiocatalytic Friedel–Crafts Alkylation Using a Promiscuous Biosynthetic Enzyme
year cv 201920192019
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20181401610.1002/anie.20181401610.1002/ange.201814016
first author openalex SchultzSchultzSchultz

Also recorded as

Citations

OpenAlex
47
Scholar
none
DOI
10.1002/anie.201814016
OpenAlex
W2914911203

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2019 Chemistry, bioactivity and biosynthesis of cyanobacterial alkylresorcinols. Natural Product Reports review journal CV OA GS

CV span

lines 378–380 · CV · published

37873. Martins, Teresa P.; Rouger, Caroline; Glasser, Nathaniel R.; Freitas, Sara; de Fraisinette, Nelly B.;379Balskus, Emily P.; Tasdemir, Deniz; Leao, Pedro N. “Chemistry, bioactivity and biosynthesis of380cyanobacterial alkylresorcinols.” Nat. Prod. Rep. 2019, 36, 1437–1461. Review article.

Institution fields

Peer reviewed
yes
First author
Martins
Co-authors
Martins, Teresa P.; Rouger, Caroline; Glasser, Nathaniel R.; Freitas, Sara; de Fraisinette, Nelly B.; Balskus, Emily P.; Tasdemir, Deniz; Leao, Pedro N.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Chemistry, bioactivity and biosynthesis of cyanobacterial alkylresorcinols.Chemistry, bioactivity and biosynthesis of cyanobacterial alkylresorcinols
year cv 20192019
venue crossref Nat. Prod. Rep.Natural Product ReportsNatural Product Reports
kind cv reviewarticle
DOI crossref 10.1039/c8np00080h10.1039/c8np00080h
first author openalex MartinsMartins

Citations

OpenAlex
69
Scholar
none
DOI
10.1039/c8np00080h
OpenAlex
W2915040626

Match decisions

  • doi merged · 1.00 · Run 18
2019 Discovery and inhibition of an interspecies gut bacterial pathway for Levodopa metabolism. Science article journal CV OA GS

CV span

lines 370–372 · CV · published

37075. Maini Rekdal, Vayu; Bess, Elizabeth N.; Bisanz, Jordan E.; Turnbaugh, Peter J.; Balskus, Emily P.371“Discovery and inhibition of an interspecies gut bacterial pathway for Levodopa metabolism.” Science3722019, 364, eaau6323.

Institution fields

Peer reviewed
yes
First author
Maini Rekdal
Co-authors
Maini Rekdal, Vayu; Bess, Elizabeth N.; Bisanz, Jordan E.; Turnbaugh, Peter J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Discovery and inhibition of an interspecies gut bacterial pathway for Levodopa metabolism.Discovery and inhibition of an interspecies gut bacterial pathway for Levodopa metabolism
year cv 20192019
venue crossref ScienceScience
kind cv articlearticle
DOI crossref 10.1126/science.aau632310.1126/science.aau6323
first author openalex RekdalRekdal

Citations

OpenAlex
762
Scholar
none
DOI
10.1126/science.aau6323
OpenAlex
W2951517287

Match decisions

  • doi merged · 1.00 · Run 18
2019 Enzymes that detoxify marine toxins. Nature article journal CV OA GS

CV span

lines 367–368 · CV · published

36776. McCallum, Monica E.; Balskus, Emily P. “Enzymes that detoxify marine toxins.” Nature 2019, 570,368315–316. Invited commentary.

Institution fields

Peer reviewed
yes
First author
McCallum
Co-authors
McCallum, Monica E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Enzymes that detoxify marine toxins.Enzymes that detoxify marine toxins
year cv 20192019
venue crossref NatureNature
kind cv articlearticle
DOI cv 10.1038/d41586-019-01742-110.1038/d41586-019-01742-110.1038/d41586-019-01742-1
first author openalex McCallumMcCallum

Citations

OpenAlex
1
Scholar
1
DOI
10.1038/d41586-019-01742-1
OpenAlex
W2948962730

Match decisions

  • doi merged · 1.00 · Run 18
2019 In vitro characterization of the colibactin-activating peptidase ClbP enables development of a fluorogenic activity probe. ACS Chemical Biology article journal CV OA GS

CV span

lines 374–376 · CV · published

37474. Volpe, Matthew R.; Wilson, Matthew R.; Brotherton, Carolyn A.; Winter, Ethan S.; *Johnson, Sheila375E.; Balskus, Emily P. “In vitro characterization of the colibactin-activating peptidase ClbP enables376development of a fluorogenic activity probe.” ACS Chem. Biol. 2019, 14, 1097–1101.

Institution fields

Peer reviewed
yes
First author
Volpe
Co-authors
Volpe, Matthew R.; Wilson, Matthew R.; Brotherton, Carolyn A.; Winter, Ethan S.; *Johnson, Sheila E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv In vitro characterization of the colibactin-activating peptidase ClbP enables development of a fluorogenic activity probe.In Vitro Characterization of the Colibactin-Activating Peptidase ClbP Enables Development of a Fluorogenic Activity ProbeIn vitro characterization of the colibactin-activating peptidase ClbP enables development of a fluorogenic activity probeIn Vitro Characterization of the Colibactin-Activating Peptidase ClbP Enables Design of a Fluorogenic Activity Probe
year cv 2019201920192019
venue crossref ACS Chem. Biol.ACS Chemical BiologybioRxiv (Cold Spring Harbor Laboratory)ACS Chemical BiologyACS Chemical Biology
kind cv articlearticleworking_paperarticle
DOI crossref 10.1021/acschembio.9b0006910.1021/acschembio.9b0006910.1101/55938510.1021/acschembio.9b00540
preprint DOI openalex 10.1101/559385
first author openalex VolpeVolpeVolpeVolpe

Also recorded as

  • W4232971399 (DOI 10.1021/acschembio.9b00540) · title variant · 2019 In Vitro Characterization of the Colibactin-Activating Peptidase ClbP Enables Design of a Fluorogenic Activity Probe

Citations

OpenAlex
18
Scholar
none
DOI
10.1021/acschembio.9b00069
OpenAlex
W2916584285

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2019 Metabolic functions of the human gut microbiota: The role of metalloenzymes. Natural Product Reports review journal CV OA GS

CV span

lines 382–383 · CV · published

38272. Rajakovich, Lauren J.; Balskus, Emily P. “Metabolic functions of the human gut microbiota: The role383of metalloenzymes.” Nat. Prod. Rep. 2019, 36, 36, 593–625. Review article.

Institution fields

Peer reviewed
yes
First author
Rajakovich
Co-authors
Rajakovich, Lauren J.; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Metabolic functions of the human gut microbiota: The role of metalloenzymes.Metabolic functions of the human gut microbiota: the role of metalloenzymes
year cv 20192018
venue crossref Nat. Prod. Rep.Natural Product ReportsNatural Product Reports
kind cv reviewarticle
DOI crossref 10.1039/c8np00074c10.1039/c8np00074c
first author openalex RajakovichRajakovich

Citations

OpenAlex
89
Scholar
none
DOI
10.1039/c8np00074c
OpenAlex
W2901526026

Match decisions

  • doi merged · 1.00 · Run 18
2019 Reactivity of an unusual amidase may explain colibactin’s DNA cross-linking activity. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 363–365 · CV · published

36377. Jiang, Yindi; Stornetta, Alessia; Villalta, Peter W.; Wilson, Matthew R.; Boudreau, Paul D.; Zha, Li;364Balbo, Silvia; Balskus, Emily P. “Reactivity of an unusual amidase may explain colibactin’s DNA cross-365linking activity.” J. Am. Chem. Soc. 2019, 141, 11489–11496.

Institution fields

Peer reviewed
yes
First author
Jiang
Co-authors
Jiang, Yindi; Stornetta, Alessia; Villalta, Peter W.; Wilson, Matthew R.; Boudreau, Paul D.; Zha, Li; Balbo, Silvia; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Reactivity of an unusual amidase may explain colibactin’s DNA cross-linking activity.The reactivity of an unusual amidase may explain colibactin’s DNA cross-linking activityReactivity of an Unusual Amidase May Explain Colibactin’s DNA Cross-Linking Activity
year cv 201920192019
venue crossref J. Am. Chem. Soc.bioRxiv (Cold Spring Harbor Laboratory)Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articleworking_paperarticle
DOI crossref 10.1021/jacs.9b0245310.1101/56724810.1021/jacs.9b02453
preprint DOI openalex 10.1101/567248
first author openalex JiangJiangJiang

Citations

OpenAlex
70
Scholar
none
OpenAlex with related records
80
DOI
10.1021/jacs.9b02453
OpenAlex
W2955996460

Match decisions

  • doi merged · 1.00 · Run 18
2019 Structure-guided identification of a small molecule that inhibits anaerobic choline metabolism by human gut bacteria. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 398–400 · CV · published

39868. Orman, Marina; Bodea, Smaranda; Funk, Michael A.; Martínez-del Campo, Ana; Bollenbach, Maud;399Drennan, Catherine L.; Balskus, Emily P. “Structure-guided identification of a small molecule that inhibits400anaerobic choline metabolism by human gut bacteria.” J. Am. Chem. Soc. 2019, 141, 33–37.

Institution fields

Peer reviewed
yes
First author
Orman
Co-authors
Orman, Marina; Bodea, Smaranda; Funk, Michael A.; Martínez-del Campo, Ana; Bollenbach, Maud; Drennan, Catherine L.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Structure-guided identification of a small molecule that inhibits anaerobic choline metabolism by human gut bacteria.Structure-Guided Identification of a Small Molecule That Inhibits Anaerobic Choline Metabolism by Human Gut Bacteria
year cv 20192018
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.8b0488310.1021/jacs.8b04883
first author openalex OrmanOrman

Citations

OpenAlex
66
Scholar
none
DOI
10.1021/jacs.8b04883
OpenAlex
W4235466572

Match decisions

  • doi merged · 1.00 · Run 18
2019 The human gut bacterial genotoxin colibactin alkylates DNA. Science article journal CV OA GS

CV span

lines 390–393 · CV · published

39070. Wilson, Matthew R.; Jiang, Yindi; Villalta, Peter W.; Stornetta, Alessia; Boudreau, Paul D.; Carrá,391Andrea; Brennan, Caitlin A.; Chun, Eumyong; Ngo, Lizzie; Samson, Leona D.; Engelward, Bevin P.;392Garrett, Wendy S.; Balbo, Silvia; Balskus, Emily P. “The human gut bacterial genotoxin colibactin393alkylates DNA.” Science 2019, 363, eaar7785.

Institution fields

Peer reviewed
yes
First author
Wilson
Co-authors
Wilson, Matthew R.; Jiang, Yindi; Villalta, Peter W.; Stornetta, Alessia; Boudreau, Paul D.; Carrá, Andrea; Brennan, Caitlin A.; Chun, Eumyong; Ngo, Lizzie; Samson, Leona D.; Engelward, Bevin P.; Garrett, Wendy S.; Balbo, Silvia; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The human gut bacterial genotoxin colibactin alkylates DNA.The human gut bacterial genotoxin colibactin alkylates DNA
year cv 20192019
venue crossref ScienceScience
kind cv articlearticle
DOI crossref 10.1126/science.aar778510.1126/science.aar7785
first author openalex WilsonWilson

Citations

OpenAlex
657
Scholar
none
DOI
10.1126/science.aar7785
OpenAlex
W2912413992

Match decisions

  • doi merged · 1.00 · Run 18
2019 The mysteries of macrocyclic colibactins. Nature Chemistry article journal CV OA GS

CV span

lines 354–355 · CV · published

35479. Carlson, Erik S.; Balskus, Emily P. “The mysteries of macrocyclic colibactins.” Nature Chemistry3552019, 11, 867–869. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Carlson
Co-authors
Carlson, Erik S.; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The mysteries of macrocyclic colibactins.The mysteries of macrocyclic colibactins
year cv 20192019
venue crossref Nature ChemistryNature Chemistry
kind cv articlearticle
DOI crossref 10.1038/s41557-019-0339-110.1038/s41557-019-0339-1
first author openalex CarlsonCarlson

Citations

OpenAlex
4
Scholar
none
DOI
10.1038/s41557-019-0339-1
OpenAlex
W2974357078

Match decisions

  • doi merged · 1.00 · Run 18
2019 Trimethylamine N-oxide binds and activates PERK to promote metabolic dysfunction. Cell Metabolism article journal CV OA GS

CV span

lines 357–361 · CV · published

35778. Chen, Sifan; Henderson, Ayana; Petriello, Michael; Romano, Kymberleigh A.; Gearing, Mary; Miao,358Ji; Schell, Mareike; Sandoval-Espinola, Walter J.; Tao, Jiahui; Sha, Bingdong; Graham, Mark; Crooke,359Rosanne; Kleinridders, Andre; Balskus, Emily P.; Rey, Federico E.; Morris, Andrew; Biddinger, Sudha360B. “Trimethylamine N-oxide binds and activates PERK to promote metabolic dysfunction.” Cell Metab.3612019, 30, 1141–1151.e5.

Institution fields

Peer reviewed
yes
First author
Chen
Co-authors
Chen, Sifan; Henderson, Ayana; Petriello, Michael; Romano, Kymberleigh A.; Gearing, Mary; Miao, Ji; Schell, Mareike; Sandoval-Espinola, Walter J.; Tao, Jiahui; Sha, Bingdong; Graham, Mark; Crooke, Rosanne; Kleinridders, Andre; Balskus, Emily P.; Rey, Federico E.; Morris, Andrew; Biddinger, Sudha B.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Trimethylamine N-oxide binds and activates PERK to promote metabolic dysfunction.Trimethylamine N-Oxide Binds and Activates PERK to Promote Metabolic Dysfunction
year cv 20192019
venue crossref Cell Metab.Cell MetabolismCell Metabolism
kind cv articlearticle
DOI crossref 10.1016/j.cmet.2019.08.02110.1016/j.cmet.2019.08.021
first author openalex ChenChen

Citations

OpenAlex
428
Scholar
none
DOI
10.1016/j.cmet.2019.08.021
OpenAlex
W2973552995

Match decisions

  • doi merged · 1.00 · Run 18
2018 Anaerobic 4-hydroxyproline utilization: Discovery of a new glycyl radical enzyme in the human gut microbiome uncovers a widespread microbial metabolic activity. Gut Microbes article journal CV OA GS

CV span

lines 437–439 · CV · published

43757. Huang, Yolanda Y.; Martínez-del Campo, Ana; Balskus, Emily P. "Anaerobic 4-hydroxyproline438utilization: Discovery of a new glycyl radical enzyme in the human gut microbiome uncovers a widespread439microbial metabolic activity." Gut Microbes 2018, 9, 437–451.

Institution fields

Peer reviewed
yes
First author
Huang
Co-authors
Huang, Yolanda Y.; Martínez-del Campo, Ana; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Anaerobic 4-hydroxyproline utilization: Discovery of a new glycyl radical enzyme in the human gut microbiome uncovers a widespread microbial metabolic activity.Anaerobic 4-hydroxyproline utilization: Discovery of a new glycyl radical enzyme in the human gut microbiome uncovers a widespread microbial metabolic activity
year cv 20182018
venue crossref Gut MicrobesGut Microbes
kind cv articlearticle
DOI crossref 10.1080/19490976.2018.143524410.1080/19490976.2018.1435244
first author openalex HuangHuang

Citations

OpenAlex
49
Scholar
none
DOI
10.1080/19490976.2018.1435244
OpenAlex
W2789964792

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2018 Characterization of 1,2-propanediol dehydratases reveals distinct mechanisms for B12-dependent and glycyl radical enzymes. Biochemistry article journal CV OA GS

CV span

lines 434–435 · CV · published

43458. Levin, Benjamin J.; Balskus, Emily P. "Characterization of 1,2-propanediol dehydratases reveals435distinct mechanisms for B12-dependent and glycyl radical enzymes." Biochemistry 2018, 57, 3222–3226.

Institution fields

Peer reviewed
yes
First author
Levin
Co-authors
Levin, Benjamin J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Characterization of 1,2-propanediol dehydratases reveals distinct mechanisms for B12-dependent and glycyl radical enzymes.Characterization of 1,2-Propanediol Dehydratases Reveals Distinct Mechanisms for B 12 -Dependent and Glycyl Radical Enzymes
year cv 20182018
venue crossref BiochemistryBiochemistry
kind cv articlearticle
DOI crossref 10.1021/acs.biochem.8b0016410.1021/acs.biochem.8b00164
first author openalex LevinLevin

Citations

OpenAlex
41
Scholar
none
DOI
10.1021/acs.biochem.8b00164
OpenAlex
W2791275274

Match decisions

  • doi merged · 1.00 · Run 18
2018 Deciphering human gut microbiota-nutrient interactions: A role for biochemistry. Biochemistry article journal CV OA GS

CV span

lines 423–424 · CV · published

42361. Chittim, Carina L.; Irwin, Stephania M.; Balskus, Emily P. "Deciphering human gut microbiota-424nutrient interactions: A role for biochemistry." Biochemistry 2018, 57, 2567–2577. Perspective article.

Institution fields

Peer reviewed
yes
First author
Chittim
Co-authors
Chittim, Carina L.; Irwin, Stephania M.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Deciphering human gut microbiota-nutrient interactions: A role for biochemistry.Deciphering Human Gut Microbiota–Nutrient Interactions: A Role for Biochemistry
year cv 20182018
venue crossref BiochemistryBiochemistry
kind cv articlearticle
DOI crossref 10.1021/acs.biochem.7b0127710.1021/acs.biochem.7b01277
first author openalex ChittimChittim

Citations

OpenAlex
27
Scholar
none
DOI
10.1021/acs.biochem.7b01277
OpenAlex
W2800087231

Match decisions

  • doi merged · 1.00 · Run 18
2018 Discovering radical-dependent enzymes in the human gut microbiota. Current Opinion in Chemical Biology article journal CV OA GS

CV span

lines 413–414 · CV · published

41364. Levin, Benjamin J.; Balskus, Emily P. “Discovering radical-dependent enzymes in the human gut414microbiota.” Curr. Opin. Chem. Biol. 2018, 47, 86–93. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Levin
Co-authors
Levin, Benjamin J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Discovering radical-dependent enzymes in the human gut microbiota.Discovering radical-dependent enzymes in the human gut microbiota
year cv 20182018
venue crossref Curr. Opin. Chem. Biol.Current Opinion in Chemical BiologyCurrent Opinion in Chemical Biology
kind cv articlereview
DOI crossref 10.1016/j.cbpa.2018.09.01110.1016/j.cbpa.2018.09.011
first author openalex LevinLevin

Citations

OpenAlex
23
Scholar
none
DOI
10.1016/j.cbpa.2018.09.011
OpenAlex
W2892549804

Match decisions

  • doi merged · 1.00 · Run 18
2018 Discovery and characterization of a prevalent human gut bacterial enzyme sufficient for the inactivation of a family of plant toxins. eLife article journal CV OA GS

CV span

lines 419–421 · CV · published

41962. Koppel, Nitzan; Bisanz, Jordan E.; Pandelia, Maria-Eirini; Turnbaugh, Peter J.; Balskus, Emily P.420"Discovery and characterization of a prevalent human gut bacterial enzyme sufficient for the inactivation421of a family of plant toxins." eLife 2018, 7, e33953.

Institution fields

Peer reviewed
yes
First author
Koppel
Co-authors
Koppel, Nitzan; Bisanz, Jordan E.; Pandelia, Maria-Eirini; Turnbaugh, Peter J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Discovery and characterization of a prevalent human gut bacterial enzyme sufficient for the inactivation of a family of plant toxins.Discovery and characterization of a prevalent human gut bacterial enzyme sufficient for the inactivation of a family of plant toxins
year cv 20182018
venue crossref eLifeeLife
kind cv articlearticle
DOI crossref 10.7554/elife.3395310.7554/elife.33953
first author openalex KoppelKoppel

Citations

OpenAlex
144
Scholar
none
DOI
10.7554/elife.33953
OpenAlex
W2803475077

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2018 Discovery of a diazo-forming enzyme in cremeomycin biosynthesis. The Journal of Organic Chemistry article journal CV OA GS

CV span

lines 416–417 · CV · published

41663. Waldman, Abraham J.; Balskus, Emily P. "Discovery of a diazo-forming enzyme in cremeomycin417biosynthesis." J. Org. Chem. 2018, 83, 7539–7546.

Institution fields

Peer reviewed
yes
First author
Waldman
Co-authors
Waldman, Abraham J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Discovery of a diazo-forming enzyme in cremeomycin biosynthesis.Discovery of a Diazo-Forming Enzyme in Cremeomycin Biosynthesis
year cv 20182018
venue crossref J. Org. Chem.The Journal of Organic ChemistryThe Journal of Organic Chemistry
kind cv articlearticle
DOI crossref 10.1021/acs.joc.8b0036710.1021/acs.joc.8b00367
first author openalex WaldmanWaldman

Citations

OpenAlex
96
Scholar
none
DOI
10.1021/acs.joc.8b00367
OpenAlex
W2803666456

Match decisions

  • doi merged · 1.00 · Run 18
2018 Discovery of small molecule protease inhibitors by investigating a widespread human gut bacterial biosynthetic pathway. Tetrahedron article journal CV OA GS

CV span

lines 430–432 · CV · published

43059. Schneider, Benjamin A.; Balskus, Emily P. "Discovery of small molecule protease inhibitors by431investigating a widespread human gut bacterial biosynthetic pathway." Tetrahedron 2018, 74, 3215–4323230.

Institution fields

Peer reviewed
yes
First author
Schneider
Co-authors
Schneider, Benjamin A.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Discovery of small molecule protease inhibitors by investigating a widespread human gut bacterial biosynthetic pathway.Discovery of small molecule protease inhibitors by investigating a widespread human gut bacterial biosynthetic pathway
year cv 20182018
venue crossref TetrahedronTetrahedron
kind cv articlearticle
DOI crossref 10.1016/j.tet.2018.03.04310.1016/j.tet.2018.03.043
first author openalex SchneiderSchneider

Citations

OpenAlex
22
Scholar
none
DOI
10.1016/j.tet.2018.03.043
OpenAlex
W2795107790

Match decisions

  • doi merged · 1.00 · Run 18
2018 Engineering chemical interactions in microbial communities. Chemical Society Reviews review journal CV OA GS

CV span

lines 444–445 · CV · published

44455. Kenny, Douglas J.; Balskus, Emily P. "Engineering chemical interactions in microbial445communities." Chem. Soc. Rev. 2018, 47, 1750–1729. Review article.

Institution fields

Peer reviewed
yes
First author
Kenny
Co-authors
Kenny, Douglas J.; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Engineering chemical interactions in microbial communities.Engineering chemical interactions in microbial communities
year cv 20182017
venue crossref Chem. Soc. Rev.Chemical Society ReviewsChemical Society Reviews
kind cv reviewreview
DOI crossref 10.1039/c7cs00664k10.1039/c7cs00664k
first author openalex KennyKenny

Citations

OpenAlex
34
Scholar
none
DOI
10.1039/c7cs00664k
OpenAlex
W2771980073

Match decisions

  • doi merged · 1.00 · Run 18
2018 Glutamic acid is a carrier for hydrazine during the biosyntheses of fosfazinomycin and kanamycin. Nature Communications article journal CV OA GS

CV span

lines 409–411 · CV · published

40965. Wang, Kwo-Kwang A.; Ng, Tai L.; Wang, Peng; Huang, Zedu; Balskus Emily P.; van der Donk,410Wilfred A. “Glutamic acid is a carrier for hydrazine during the biosyntheses of fosfazinomycin and411kanamycin.” Nat. Commun. 2018, 9, 3687. Co-corresponding author.

Institution fields

Peer reviewed
yes
First author
Wang
Co-authors
Wang, Kwo-Kwang A.; Ng, Tai L.; Wang, Peng; Huang, Zedu; Balskus Emily P.; van der Donk, Wilfred A.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Glutamic acid is a carrier for hydrazine during the biosyntheses of fosfazinomycin and kanamycin.Glutamic acid is a carrier for hydrazine during the biosyntheses of fosfazinomycin and kinamycinGlutamic acid is a carrier for hydrazine during the biosyntheses of fosfazinomycin and kinamycin
year cv 201820182018
venue crossref Nat. Commun.Nature CommunicationsbioRxiv (Cold Spring Harbor Laboratory)Nature Communications
kind cv articlearticleworking_paper
DOI crossref 10.1038/s41467-018-06083-710.1038/s41467-018-06083-710.1101/365031
preprint DOI openalex 10.1101/365031
first author openalex WangWangWang

Citations

OpenAlex
82
Scholar
none
OpenAlex with related records
87
DOI
10.1038/s41467-018-06083-7
OpenAlex
W2817795568

Match decisions

  • doi merged · 1.00 · Run 18
2018 Gut bacterial phospholipase Ds support disease-associated metabolism by generating choline. Nature Microbiology article journal CV OA GS

CV span

lines 406–407 · CV · published

40666. Chittim, Carina L.; Martínez-del Campo, Ana; Balskus, Emily P. “Gut bacterial phospholipase Ds407support disease-associated metabolism by generating choline.” Nat. Microbiol. 2018, 4, 155–163.

Institution fields

Peer reviewed
yes
First author
Chittim
Co-authors
Chittim, Carina L.; Martínez-del Campo, Ana; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Gut bacterial phospholipase Ds support disease-associated metabolism by generating choline.Gut bacterial phospholipase Ds support disease-associated metabolism by generating choline
year cv 20182018
venue crossref Nat. Microbiol.Nature MicrobiologyNature Microbiology
kind cv articlearticle
DOI crossref 10.1038/s41564-018-0294-410.1038/s41564-018-0294-4
first author openalex ChittimChittim

Citations

OpenAlex
92
Scholar
none
DOI
10.1038/s41564-018-0294-4
OpenAlex
W2899768023

Match decisions

  • doi merged · 1.00 · Run 18
2018 Gut microbiota: Rational manipulation of gut bacterial metalloenzymes provides insights into dysbiosis and inflammation. Biochemistry article journal CV OA GS

CV span

lines 426–428 · CV · published

42660. Maini Rekdal, Vayu; Balskus, Emily P. "Gut microbiota: Rational manipulation of gut bacterial427metalloenzymes provides insights into dysbiosis and inflammation." Biochemistry 2018, 57, 2291–2293.428Viewpoint article.

Institution fields

Peer reviewed
yes
First author
Maini Rekdal
Co-authors
Maini Rekdal, Vayu; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Gut microbiota: Rational manipulation of gut bacterial metalloenzymes provides insights into dysbiosis and inflammation.Gut Microbiota: Rational Manipulation of Gut Bacterial Metalloenzymes Provides Insights into Dysbiosis and Inflammation
year cv 20182018
venue crossref BiochemistryBiochemistry
kind cv articlearticle
DOI crossref 10.1021/acs.biochem.8b0034010.1021/acs.biochem.8b00340
first author openalex RekdalRekdal

Citations

OpenAlex
6
Scholar
none
DOI
10.1021/acs.biochem.8b00340
OpenAlex
W2797970341

Match decisions

  • doi merged · 1.00 · Run 18
2018 Purification and characterization of the choline trimethylamine-lyase (CutC)-activating protein CutD. Methods in Enzymology chapter CV OA GS

CV span

lines 658–660 · CV · published

658Bodea, Smaranda; Balskus, Emily P. ”Purification and characterization of the choline trimethylamine-659lyase (CutC)-activating protein CutD.” In Radical SAM Enzymes; Methods in Enzymology 2018, 606, 73–66094. Ed. Vahe Bandarian. Elsevier.

Institution fields

Peer reviewed
none
First author
Bodea
Co-authors
Bodea, Smaranda; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
Elsevier
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Purification and characterization of the choline trimethylamine-lyase (CutC)-activating protein CutD.Purification and Characterization of the Choline Trimethylamine-Lyase (CutC)-Activating Protein CutD
year cv 20182018
venue crossref Radical SAM Enzymes; Methods in EnzymologyMethods in enzymology on CD-ROM/Methods in enzymologyMethods in Enzymology
kind cv chapterchapter
DOI crossref 10.1016/bs.mie.2018.04.01210.1016/bs.mie.2018.04.012
first author openalex BodeaBodea

Citations

OpenAlex
14
Scholar
none
DOI
10.1016/bs.mie.2018.04.012
OpenAlex
W2805943411

Match decisions

  • doi merged · 1.00 · Run 18
2018 The human microbiota, infectious disease, and global health: Challenges and opportunities ACS Infectious Diseases article journal CV OA GS

CV span

lines 441–442 · CV · published

44156. Waldman, Abraham J.; Balskus, Emily P. "The human microbiota, infectious disease, and global442health: Challenges and opportunities" ACS Infect. Dis. 2018, 4, 14–26. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Waldman
Co-authors
Waldman, Abraham J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv The human microbiota, infectious disease, and global health: Challenges and opportunitiesThe Human Microbiota, Infectious Disease, and Global Health: Challenges and Opportunities
year cv 20182017
venue crossref ACS Infect. Dis.ACS Infectious DiseasesACS Infectious Diseases
kind cv articlearticle
DOI crossref 10.1021/acsinfecdis.7b0023210.1021/acsinfecdis.7b00232
first author openalex WaldmanWaldman

Citations

OpenAlex
54
Scholar
none
DOI
10.1021/acsinfecdis.7b00232
OpenAlex
W2775169685

Match decisions

  • doi merged · 1.00 · Run 18
2017 A new strategy for aromatic ring alkylation in cylindrocyclophane biosynthesis. Nature Chemical Biology article journal CV OA GS

CV span

lines 456–457 · CV · published

45652. Nakamura, Hitomi; Schultz, Erica E.; Balskus, Emily P. “A new strategy for aromatic ring alkylation457in cylindrocyclophane biosynthesis.” Nat. Chem. Biol. 2017, 13, 916–921.

Institution fields

Peer reviewed
yes
First author
Nakamura
Co-authors
Nakamura, Hitomi; Schultz, Erica E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A new strategy for aromatic ring alkylation in cylindrocyclophane biosynthesis.A new strategy for aromatic ring alkylation in cylindrocyclophane biosynthesis
year cv 20172017
venue crossref Nat. Chem. Biol.Nature Chemical BiologyNature Chemical Biology
kind cv articlearticle
DOI crossref 10.1038/nchembio.242110.1038/nchembio.2421
first author openalex NakamuraNakamura

Citations

OpenAlex
107
Scholar
none
DOI
10.1038/nchembio.2421
OpenAlex
W2704642493

Match decisions

  • doi merged · 1.00 · Run 18
2017 A prominent glycyl radical enzyme in human gut microbiomes metabolizes trans-4-hydroxy-L-proline. Science article journal CV OA GS

CV span

lines 471–473 · CV · published

47147. Levin, Benjamin J.; Huang, Yue Y.; Peck, Spencer C.; Wei, Yifeng; Martínez-del Campo, Ana; *Marks,472Jonathan A.; Franzosa, Eric A.; Huttenhower, Curtis; Balskus, Emily P. “A prominent glycyl radical473enzyme in human gut microbiomes metabolizes trans-4-hydroxy-L-proline.” Science 2017, 355, aai8386.

Institution fields

Peer reviewed
yes
First author
Levin
Co-authors
Levin, Benjamin J.; Huang, Yue Y.; Peck, Spencer C.; Wei, Yifeng; Martínez-del Campo, Ana; *Marks, Jonathan A.; Franzosa, Eric A.; Huttenhower, Curtis; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv A prominent glycyl radical enzyme in human gut microbiomes metabolizes trans-4-hydroxy-L-proline.A prominent glycyl radical enzyme in human gut microbiomes metabolizes trans -4-hydroxy- l -proline
year cv 20172017
venue crossref ScienceScience
kind cv articlearticle
DOI crossref 10.1126/science.aai838610.1126/science.aai8386
first author openalex LevinLevin

Citations

OpenAlex
146
Scholar
none
DOI
10.1126/science.aai8386
OpenAlex
W2594333543

Match decisions

  • doi merged · 1.00 · Run 18
2017 Chemical transformation of xenobiotics by the human gut microbiota. Science review journal CV OA GS

CV span

lines 459–460 · CV · published

45951. Koppel, Nitzan; Maini Rekdal, Vayu; Balskus, Emily P. “Chemical transformation of xenobiotics by460the human gut microbiota.” Science 2017, 356, eaag2770. Review article.

Institution fields

Peer reviewed
yes
First author
Koppel
Co-authors
Koppel, Nitzan; Maini Rekdal, Vayu; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Chemical transformation of xenobiotics by the human gut microbiota.Chemical transformation of xenobiotics by the human gut microbiota
year cv 20172017
venue crossref ScienceScience
kind cv reviewarticle
DOI crossref 10.1126/science.aag277010.1126/science.aag2770
first author openalex KoppelKoppel

Citations

OpenAlex
1094
Scholar
none
DOI
10.1126/science.aag2770
OpenAlex
W2716699759

Match decisions

  • doi merged · 1.00 · Run 18
2017 Colibactin assembly line enzymes use S-adenosylmethionine to build a cyclopropane ring. Nature Chemical Biology article journal CV OA GS

CV span

lines 452–454 · CV · published

45253. Zha, Li; Jiang, Yindi; Henke, Matthew T.; Wilson, Matthew R.; Wang, Jennifer X.; Kelleher, Neil453L.; Balskus, Emily P. “Colibactin assembly line enzymes use S-adenosylmethionine to build a454cyclopropane ring.” Nat. Chem. Biol. 2017, 13, 1063–1065.

Institution fields

Peer reviewed
yes
First author
Zha
Co-authors
Zha, Li; Jiang, Yindi; Henke, Matthew T.; Wilson, Matthew R.; Wang, Jennifer X.; Kelleher, Neil L.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Colibactin assembly line enzymes use S-adenosylmethionine to build a cyclopropane ring.Colibactin assembly line enzymes use S-adenosylmethionine to build a cyclopropane ring
year cv 20172017
venue crossref Nat. Chem. Biol.Nature Chemical BiologyNature Chemical Biology
kind cv articlearticle
DOI crossref 10.1038/nchembio.244810.1038/nchembio.2448
first author openalex ZhaZha

Citations

OpenAlex
64
Scholar
none
DOI
10.1038/nchembio.2448
OpenAlex
W2743973366

Match decisions

  • doi merged · 1.00 · Run 18
2017 Deciphering the chemistry of the human gut microbiome. The Chemistry of Microbiomes: Proceedings of a Seminar Series chapter CV OA GS

CV span

lines 662–664 · CV · published

662Balskus, Emily P. “Deciphering the chemistry of the human gut microbiome.” In The Chemistry of663Microbiomes: Proceedings of a Seminar Series 2017 doi:10.17226/24751. Washington, D.C.: The664National Academies Press, National Academies of Sciences, Engineering, and Medicine. Perspective.

Institution fields

Peer reviewed
none
First author
Balskus
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
The National Academies Press, National Academies of Sciences, Engineering, and Medicine
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Deciphering the chemistry of the human gut microbiome.
year cv 2017
venue cv The Chemistry of Microbiomes: Proceedings of a Seminar Series
kind cv chapter
DOI cv 10.17226/24751
first author cv Balskus

Citations

OpenAlex
none
Scholar
none
DOI
10.17226/24751

Match decisions

No decision recorded; a single record.

2017 Heteroatom–heteroatom bond formation in natural product biosynthesis. Chemical Reviews review journal CV OA GS

CV span

lines 465–466 · CV · published

46549. Waldman, Abraham J.; Ng, Tailun; Wang, Peng; Balskus, Emily P. “Heteroatom–heteroatom bond466formation in natural product biosynthesis.” Chem. Rev. 2017, 17, 5784–5863. Review article.

Institution fields

Peer reviewed
yes
First author
Waldman
Co-authors
Waldman, Abraham J.; Ng, Tailun; Wang, Peng; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Heteroatom–heteroatom bond formation in natural product biosynthesis.Heteroatom–Heteroatom Bond Formation in Natural Product Biosynthesis
year cv 20172017
venue crossref Chem. Rev.Chemical ReviewsChemical Reviews
kind cv reviewreview
DOI crossref 10.1021/acs.chemrev.6b0062110.1021/acs.chemrev.6b00621
first author openalex WaldmanWaldman

Citations

OpenAlex
237
Scholar
none
DOI
10.1021/acs.chemrev.6b00621
OpenAlex
W2604872822

Match decisions

  • doi merged · 1.00 · Run 18
2017 Interfacing biocompatible reactions with engineered Escherichia coli. Methods in Molecular Biology chapter CV OA GS

CV span

lines 666–668 · CV · published

666Wallace, Stephen; Balskus, Emily P. “Interfacing biocompatible reactions with engineered Escherichia667coli.” In Heterologous Gene Expression in E. coli: Methods and Protocols; Methods in Molecular Biology6682017, 1586, 409–421. Ed. Nicola A. Burgess-Brown. New York: Springer.

Institution fields

Peer reviewed
none
First author
Wallace
Co-authors
Wallace, Stephen; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
Springer
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Interfacing biocompatible reactions with engineered Escherichia coli.Interfacing Biocompatible Reactions with Engineered Escherichia coli
year cv 20172017
venue crossref Heterologous Gene Expression in E. coli: Methods and Protocols; Methods in Molecular BiologyMethods in molecular biologyMethods in Molecular Biology
kind cv chapterchapter
DOI crossref 10.1007/978-1-4939-6887-9_2710.1007/978-1-4939-6887-9_27
first author openalex WallaceWallace

Citations

OpenAlex
0
Scholar
none
DOI
10.1007/978-1-4939-6887-9_27
OpenAlex
W2611047757

Match decisions

  • doi merged · 1.00 · Run 18
2017 Metabolic, epigenetic, and transgenerational effects of gut bacterial choline consumption. Cell Host & Microbe article journal CV OA GS

CV span

lines 447–450 · CV · published

44754. Romano, Kymberleigh A.; Martínez-del Campo, Ana; Kasahara, Kazuyuki; Chittim, Carina L.; Vivas,448Eugenio I.; Amador-Noguez, Daniel; Balskus, Emily P.; Rey, Federico E. “Metabolic, epigenetic, and449transgenerational effects of gut bacterial choline consumption.” Cell Host Microbe 2017, 22, 279–290.e7.450Co-corresponding author.

Institution fields

Peer reviewed
yes
First author
Romano
Co-authors
Romano, Kymberleigh A.; Martínez-del Campo, Ana; Kasahara, Kazuyuki; Chittim, Carina L.; Vivas, Eugenio I.; Amador-Noguez, Daniel; Balskus, Emily P.; Rey, Federico E.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Metabolic, epigenetic, and transgenerational effects of gut bacterial choline consumption.Metabolic, Epigenetic, and Transgenerational Effects of Gut Bacterial Choline Consumption
year cv 20172017
venue crossref Cell Host MicrobeCell Host & MicrobeCell Host & Microbe
kind cv articlearticle
DOI crossref 10.1016/j.chom.2017.07.02110.1016/j.chom.2017.07.021
first author openalex RomanoRomano

Citations

OpenAlex
242
Scholar
none
DOI
10.1016/j.chom.2017.07.021
OpenAlex
W2750083495

Match decisions

  • doi merged · 1.00 · Run 18
2017 Natural product discovery from the human microbiome. Journal of Biological Chemistry review journal CV OA GS

CV span

lines 462–463 · CV · published

46250. Wilson, Matthew R.; Zha, Li; Balskus, Emily P. “Natural product discovery from the human463microbiome.” J. Biol. Chem. 2017, 292, 8546–8552. Minireview.

Institution fields

Peer reviewed
yes
First author
Wilson
Co-authors
Wilson, Matthew R.; Zha, Li; Balskus, Emily P.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Natural product discovery from the human microbiome.Natural product discovery from the human microbiome
year cv 20172017
venue crossref J. Biol. Chem.Journal of Biological ChemistryJournal of Biological Chemistry
kind cv reviewarticle
DOI crossref 10.1074/jbc.r116.76290610.1074/jbc.r116.762906
first author openalex WilsonWilson

Citations

OpenAlex
78
Scholar
none
DOI
10.1074/jbc.r116.762906
OpenAlex
W2604540065

Match decisions

  • doi merged · 1.00 · Run 18
2017 Production of stealthin C involves an S–N-type Smiles rearrangement. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 468–469 · CV · published

46848. Wang, Peng; *Hong, Gloria J.; Wilson, Matthew R.; Balskus, Emily P. “Production of stealthin C469involves an S–N-type Smiles rearrangement.” J. Am. Chem. Soc. 2017, 139, 2864–2867.

Institution fields

Peer reviewed
yes
First author
Wang
Co-authors
Wang, Peng; *Hong, Gloria J.; Wilson, Matthew R.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Production of stealthin C involves an S–N-type Smiles rearrangement.Production of Stealthin C Involves an S–N-Type Smiles Rearrangement
year cv 20172017
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.6b1058610.1021/jacs.6b10586
first author openalex WangWang

Citations

OpenAlex
33
Scholar
none
DOI
10.1021/jacs.6b10586
OpenAlex
W2588761022

Match decisions

  • doi merged · 1.00 · Run 18
2016 Addressing infectious disease challenges by investigating microbiomes. ACS Infectious Diseases article journal CV OA GS

CV span

lines 479–480 · CV · published

47945. Balskus, Emily P. “Addressing infectious disease challenges by investigating microbiomes.” ACS480Infect. Dis. 2016, 2, 453–455. Editorial.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Addressing infectious disease challenges by investigating microbiomes.Addressing Infectious Disease Challenges by Investigating Microbiomes
year cv 20162016
venue crossref ACS Infect. Dis.ACS Infectious DiseasesACS Infectious Diseases
kind cv articlearticle
DOI crossref 10.1021/acsinfecdis.6b0010010.1021/acsinfecdis.6b00100
first author openalex BalskusBalskus

Citations

OpenAlex
2
Scholar
none
DOI
10.1021/acsinfecdis.6b00100
OpenAlex
W2435115326

Match decisions

  • doi merged · 1.00 · Run 18
2016 Characterization of polyketide synthase machinery from the pks island facilitates isolation of a candidate precolibactin. ACS Chemical Biology article journal CV OA GS

CV span

lines 489–491 · CV · published

48942. Zha, Li; Wilson, Matthew R.; Brotherton, Carolyn A.; Balskus, Emily P. “Characterization of490polyketide synthase machinery from the pks island facilitates isolation of a candidate precolibactin.” ACS491Chem. Biol. 2016, 11, 1287–1295.

Institution fields

Peer reviewed
yes
First author
Zha
Co-authors
Zha, Li; Wilson, Matthew R.; Brotherton, Carolyn A.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Characterization of polyketide synthase machinery from the pks island facilitates isolation of a candidate precolibactin.Characterization of Polyketide Synthase Machinery from the pks Island Facilitates Isolation of a Candidate Precolibactin
year cv 20162016
venue crossref ACS Chem. Biol.ACS Chemical BiologyACS Chemical Biology
kind cv articlearticle
DOI crossref 10.1021/acschembio.6b0001410.1021/acschembio.6b00014
first author openalex ZhaZha

Citations

OpenAlex
63
Scholar
none
DOI
10.1021/acschembio.6b00014
OpenAlex
W2285561481

Match decisions

  • doi merged · 1.00 · Run 18
2016 Designer micelles accelerate flux through engineered metabolism in E. coli and support biocompatible chemistry. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 486–487 · CV · published

48643. Wallace, Stephen; Balskus, Emily P. “Designer micelles accelerate flux through engineered487metabolism in E. coli and support biocompatible chemistry.” Angew. Chem. Int. Ed. 2016, 55, 6023–6027.

Institution fields

Peer reviewed
yes
First author
Wallace
Co-authors
Wallace, Stephen; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Designer micelles accelerate flux through engineered metabolism in E. coli and support biocompatible chemistry.Designer Micelles Accelerate Flux Through Engineered Metabolism in E. coli and Support Biocompatible ChemistryDesigner Micelles Accelerate Flux Through Engineered Metabolism in E. coli and Support Biocompatible Chemistry
year cv 201620162016
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20160096610.1002/anie.20160096610.1002/ange.201600966
first author openalex WallaceWallaceWallace

Also recorded as

  • W4236659730 (DOI 10.1002/ange.201600966) · same title · 2016 Designer Micelles Accelerate Flux Through Engineered Metabolism in E. coli and Support Biocompatible Chemistry

Citations

OpenAlex
70
Scholar
none
DOI
10.1002/anie.201600966
OpenAlex
W2313775193

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2016 Exploring and understanding the biochemical diversity of the human microbiota. Cell Chemical Biology article journal CV OA GS

CV span

lines 493–494 · CV · published

49341. Koppel, Nitzan; Balskus, Emily P. “Exploring and understanding the biochemical diversity of the494human microbiota.” Cell Chem. Biol. 2016, 23, 18–30. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Koppel
Co-authors
Koppel, Nitzan; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Exploring and understanding the biochemical diversity of the human microbiota.Exploring and Understanding the Biochemical Diversity of the Human Microbiota
year cv 20162016
venue crossref Cell Chem. Biol.Cell chemical biologyCell Chemical Biology
kind cv articlearticle
DOI crossref 10.1016/j.chembiol.2015.12.00810.1016/j.chembiol.2015.12.008
first author openalex KoppelKoppel

Citations

OpenAlex
144
Scholar
none
DOI
10.1016/j.chembiol.2015.12.008
OpenAlex
W2264701027

Match decisions

  • doi merged · 1.00 · Run 18
2016 Molecular basis of C–N bond cleavage by the glycyl radical enzyme choline trimethylamine-lyase. Cell Chemical Biology article journal CV OA GS

CV span

lines 475–477 · CV · published

47546. Bodea, Smaranda; Funk, Michael A.; Balskus, Emily P.; Drennan, Catherine L. “Molecular basis of476C–N bond cleavage by the glycyl radical enzyme choline trimethylamine-lyase.” Cell Chem. Biol. 2016,47723, 1206–1216. Co-corresponding author.

Institution fields

Peer reviewed
yes
First author
Bodea
Co-authors
Bodea, Smaranda; Funk, Michael A.; Balskus, Emily P.; Drennan, Catherine L.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Molecular basis of C–N bond cleavage by the glycyl radical enzyme choline trimethylamine-lyase.Molecular Basis of C–N Bond Cleavage by the Glycyl Radical Enzyme Choline Trimethylamine-LyaseMolecular Basis of C–N Bond Cleavage by the Glycyl Radical Enzyme Choline Trimethylamine-Lyase
year cv 201620162016
venue crossref Cell Chem. Biol.Cell chemical biologyDSpace@MIT (Massachusetts Institute of Technology)Cell Chemical Biology
kind cv articlearticlearticle
DOI crossref 10.1016/j.chembiol.2016.07.02010.1016/j.chembiol.2016.07.020
first author openalex BodeaBodeaBodea

Also recorded as

  • W2919075157 · same title · 2016 Molecular Basis of C–N Bond Cleavage by the Glycyl Radical Enzyme Choline Trimethylamine-Lyase

Citations

OpenAlex
76
Scholar
none
DOI
10.1016/j.chembiol.2016.07.020
OpenAlex
W2522029527

Match decisions

  • doi merged · 1.00 · Run 18
2016 The plot thickens: Diet microbe interactions may modulate thrombosis risk. Cell Metabolism article journal CV OA GS

CV span

lines 482–484 · CV · published

48244. Martínez-del Campo, Ana; Romano, Kymberleigh A.; Rey, Federico E.; Balskus, Emily P. “The plot483thickens: Diet microbe interactions may modulate thrombosis risk.” Cell Metab. 2016, 23, 573–575.484Preview article.

Institution fields

Peer reviewed
yes
First author
Martínez-del Campo
Co-authors
Martínez-del Campo, Ana; Romano, Kymberleigh A.; Rey, Federico E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv The plot thickens: Diet microbe interactions may modulate thrombosis risk.The Plot Thickens: Diet Microbe Interactions May Modulate Thrombosis Risk
year cv 20162016
venue crossref Cell Metab.Cell MetabolismCell Metabolism
kind cv articlearticle
DOI crossref 10.1016/j.cmet.2016.03.01710.1016/j.cmet.2016.03.017
first author openalex CampoCampo

Citations

OpenAlex
10
Scholar
none
DOI
10.1016/j.cmet.2016.03.017
OpenAlex
W2338329959

Match decisions

  • doi merged · 1.00 · Run 18
2015 Assembly line termination in cylindrocyclophane biosynthesis: Discovery of an editing type II thioesterase in a type I polyketide synthase. Chemical Science article journal CV OA GS

CV span

lines 528–530 · CV · published

52831. Nakamura, Hitomi; Wang, Jennifer X.; Balskus, Emily P. “Assembly line termination in529cylindrocyclophane biosynthesis: Discovery of an editing type II thioesterase in a type I polyketide530synthase.” Chem. Sci. 2015, 6, 3816–3822.

Institution fields

Peer reviewed
yes
First author
Nakamura
Co-authors
Nakamura, Hitomi; Wang, Jennifer X.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Assembly line termination in cylindrocyclophane biosynthesis: Discovery of an editing type II thioesterase in a type I polyketide synthase.Assembly line termination in cylindrocyclophane biosynthesis: discovery of an editing type II thioesterase domain in a type I polyketide synthase
year cv 20152015
venue crossref Chem. Sci.Chemical ScienceChemical Science
kind cv articlearticle
DOI crossref 10.1039/c4sc03132f10.1039/c4sc03132f
first author openalex NakamuraNakamura

Citations

OpenAlex
35
Scholar
none
DOI
10.1039/c4sc03132f
OpenAlex
W2123629119

Match decisions

  • doi merged · 1.00 · Run 18
2015 A unified initiative to harness Earth's microbiomes. Science article journal CV OA GS

CV span

lines 496–497 · CV · published

49640. Unified Microbiome Initiative Consortium. “A unified initiative to harness Earth's microbiomes.”497Science 2015, 350, 507–508. Policy forum.

Institution fields

Peer reviewed
yes
First author
Unified Microbiome Initiative Consortium
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv A unified initiative to harness Earth's microbiomes.
year cv 2015
venue cv Science
kind cv article
first author cv Consortium

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2015 Biosynthesis-assisted structural elucidation of the bartolosides, chlorinated aromatic glycolipids from Cyanobacteria. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 509–512 · CV · published

50936. Leão, Pedro N.; Nakamura, Hitomi; Costa, Margarida; Pereira, Alban R.; Martins, Rosário;510Vasconcelos, Vitor; Gerwick, William H.; Balskus, Emily P. “Biosynthesis-assisted structural elucidation511of the bartolosides, chlorinated aromatic glycolipids from Cyanobacteria.” Angew. Chem. Int. Ed. 2015,51254, 11063–11067.

Institution fields

Peer reviewed
yes
First author
Leão
Co-authors
Leão, Pedro N.; Nakamura, Hitomi; Costa, Margarida; Pereira, Alban R.; Martins, Rosário; Vasconcelos, Vitor; Gerwick, William H.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Biosynthesis-assisted structural elucidation of the bartolosides, chlorinated aromatic glycolipids from Cyanobacteria.Biosynthesis‐Assisted Structural Elucidation of the Bartolosides, Chlorinated Aromatic Glycolipids from CyanobacteriaBiosynthesis‐Assisted Structural Elucidation of the Bartolosides, Chlorinated Aromatic Glycolipids from Cyanobacteria
year cv 201520152015
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20150318610.1002/anie.20150318610.1002/ange.201503186
first author openalex LeãoLeãoLeão

Also recorded as

  • W4247647928 (DOI 10.1002/ange.201503186) · same title · 2015 Biosynthesis‐Assisted Structural Elucidation of the Bartolosides, Chlorinated Aromatic Glycolipids from Cyanobacteria

Citations

OpenAlex
60
Scholar
none
DOI
10.1002/anie.201503186
OpenAlex
W2146031286

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2015 Characterization and detection of a widely distributed gene cluster that predicts anaerobic choline utilization by human gut bacteria. mBio article journal CV OA GS

CV span

lines 524–526 · CV · published

52432. Martínez-del Campo, Ana; Bodea, Smaranda; Hamer, Hilary A.; *Marks, Jonathan A.; Haiser, Henry525J.; Turnbaugh, Peter J.; Balskus, Emily P. “Characterization and detection of a widely distributed gene526cluster that predicts anaerobic choline utilization by human gut bacteria.” mBio 2015, 6, e00042-15.

Institution fields

Peer reviewed
yes
First author
Martínez-del Campo
Co-authors
Martínez-del Campo, Ana; Bodea, Smaranda; Hamer, Hilary A.; *Marks, Jonathan A.; Haiser, Henry J.; Turnbaugh, Peter J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Characterization and detection of a widely distributed gene cluster that predicts anaerobic choline utilization by human gut bacteria.Characterization and Detection of a Widely Distributed Gene Cluster That Predicts Anaerobic Choline Utilization by Human Gut Bacteria
year cv 20152015
venue crossref mBiomBio
kind cv articlearticle
DOI crossref 10.1128/mbio.00042-1510.1128/mbio.00042-15
first author openalex CampoCampo

Citations

OpenAlex
232
Scholar
none
DOI
10.1128/mbio.00042-15
OpenAlex
W2096081710

Match decisions

  • doi merged · 1.00 · Run 18
2015 Colibactin: Understanding an elusive gut bacterial genotoxin. Natural Product Reports article journal CV OA GS

CV span

lines 499–500 · CV · published

49939. Balskus, Emily P. “Colibactin: Understanding an elusive gut bacterial genotoxin.” Nat. Prod. Rep.5002015, 32, 1534–1540. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
none
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Colibactin: Understanding an elusive gut bacterial genotoxin.Colibactin: understanding an elusive gut bacterial genotoxin
year cv 20152015
venue crossref Nat. Prod. Rep.Natural Product ReportsNatural Product Reports
kind cv articlearticle
DOI crossref 10.1039/c5np00091b10.1039/c5np00091b
first author openalex BalskusBalskus

Citations

OpenAlex
101
Scholar
none
DOI
10.1039/c5np00091b
OpenAlex
W1904975951

Match decisions

  • doi merged · 1.00 · Run 18
2015 Interfacing microbial styrene production with a biocompatible cyclopropanation reaction. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 517–518 · CV · published

51734. Wallace, Stephen; Balskus, Emily P. “Interfacing microbial styrene production with a biocompatible518cyclopropanation reaction.” Angew. Chem. Int. Ed. 2015, 54, 7106–7109.

Institution fields

Peer reviewed
yes
First author
Wallace
Co-authors
Wallace, Stephen; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Interfacing microbial styrene production with a biocompatible cyclopropanation reaction.Interfacing Microbial Styrene Production with a Biocompatible Cyclopropanation ReactionInterfacing Microbial Styrene Production with a Biocompatible Cyclopropanation Reaction
year cv 201520152015
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20150218510.1002/anie.20150218510.1002/ange.201502185
first author openalex WallaceWallaceWallace

Also recorded as

Citations

OpenAlex
85
Scholar
none
DOI
10.1002/anie.201502185
OpenAlex
W2127909686

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2015 Isolation of a metabolite from the pks island provides insights into colibactin biosynthesis and activity. Organic Letters article journal CV OA GS

CV span

lines 520–522 · CV · published

52033. Brotherton, Carolyn A.; Wilson, Matthew; Byrd, Gary; Balskus, Emily P. “Isolation of a metabolite521from the pks island provides insights into colibactin biosynthesis and activity.” Org. Lett. 2015, 17, 1545–5221548.

Institution fields

Peer reviewed
yes
First author
Brotherton
Co-authors
Brotherton, Carolyn A.; Wilson, Matthew; Byrd, Gary; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Isolation of a metabolite from the pks island provides insights into colibactin biosynthesis and activity.Isolation of a Metabolite from the pks Island Provides Insights into Colibactin Biosynthesis and Activity
year cv 20152015
venue crossref Org. Lett.Organic LettersOrganic Letters
kind cv articlearticle
DOI crossref 10.1021/acs.orglett.5b0043210.1021/acs.orglett.5b00432
first author openalex BrothertonBrotherton

Citations

OpenAlex
65
Scholar
none
DOI
10.1021/acs.orglett.5b00432
OpenAlex
W1989413517

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2015 Minimum information about a biosynthetic gene cluster. Nature Chemical Biology article journal CV OA GS

CV span

lines 506–507 · CV · published

50637. Medema, Marnix H. et al. “Minimum information about a biosynthetic gene cluster.” Nat. Chem. Biol.5072015, 11, 625–631. Commentary.

Institution fields

Peer reviewed
yes
First author
Medema
Co-authors
Medema, Marnix H. et al.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Minimum information about a biosynthetic gene cluster.Minimum Information about a Biosynthetic Gene cluster
year cv 20152015
venue openalex Nat. Chem. Biol.Nature Chemical Biology
kind cv articlearticle
DOI openalex 10.1038/nchembio.1890
first author openalex MedemaMedema

Citations

OpenAlex
922
Scholar
none
DOI
10.1038/nchembio.1890
OpenAlex
W2187341651

Match decisions

  • fingerprint merged · 1.00 · Run 18
2015 Shedding light on sunscreen biosynthesis in zebrafish. eLife article journal CV OA GS

CV span

lines 514–515 · CV · published

51435. Brotherton, Carolyn A.; Balskus, Emily P. “Shedding light on sunscreen biosynthesis in zebrafish.”515eLife 2015, 4, e07961. Insight article.

Institution fields

Peer reviewed
yes
First author
Brotherton
Co-authors
Brotherton, Carolyn A.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Shedding light on sunscreen biosynthesis in zebrafish.Shedding light on sunscreen biosynthesis in zebrafish
year cv 20152015
venue crossref eLifeeLife
kind cv articlearticle
DOI crossref 10.7554/elife.0796110.7554/elife.07961
first author openalex BrothertonBrotherton

Citations

OpenAlex
8
Scholar
none
DOI
10.7554/elife.07961
OpenAlex
W1820588035

Match decisions

  • doi merged · 1.00 · Run 18
2015 The cremeomycin biosynthetic gene cluster encodes a pathway for diazo formation. ChemBioChem article journal CV OA GS

CV span

lines 502–504 · CV · published

50238. Waldman, Abraham J.; *Pechersky, Yakov; Wang, Peng; Wang, Jennifer X.; Balskus, Emily P. “The503cremeomycin biosynthetic gene cluster encodes a pathway for diazo formation.” ChemBioChem 2015,50416, 2172–2175.

Institution fields

Peer reviewed
yes
First author
Waldman
Co-authors
Waldman, Abraham J.; *Pechersky, Yakov; Wang, Peng; Wang, Jennifer X.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The cremeomycin biosynthetic gene cluster encodes a pathway for diazo formation.The Cremeomycin Biosynthetic Gene Cluster Encodes a Pathway for Diazo Formation
year cv 20152015
venue crossref ChemBioChemChemBioChem
kind cv articlearticle
DOI crossref 10.1002/cbic.20150040710.1002/cbic.201500407
first author openalex WaldmanWaldman

Citations

OpenAlex
46
Scholar
none
DOI
10.1002/cbic.201500407
OpenAlex
W2099535799

Match decisions

  • doi merged · 1.00 · Run 18
2015 Using non-enzymatic chemistry to influence microbial metabolism. Current Opinion in Chemical Biology article journal CV OA GS

CV span

lines 532–533 · CV · published

53230. Wallace, Stephen; Schultz, Erica E.; Balskus, Emily P. “Using non-enzymatic chemistry to influence533microbial metabolism.” Curr. Op. Chem. Biol. 2015, 25, 71–79. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Wallace
Co-authors
Wallace, Stephen; Schultz, Erica E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Using non-enzymatic chemistry to influence microbial metabolism.Using non-enzymatic chemistry to influence microbial metabolism
year cv 20152015
venue crossref Curr. Op. Chem. Biol.Current Opinion in Chemical BiologyCurrent Opinion in Chemical Biology
kind cv articlereview
DOI crossref 10.1016/j.cbpa.2014.12.02410.1016/j.cbpa.2014.12.024
first author openalex WallaceWallace

Citations

OpenAlex
31
Scholar
none
DOI
10.1016/j.cbpa.2014.12.024
OpenAlex
W2039202420

Match decisions

  • doi merged · 1.00 · Run 18
2014 A biocompatible alkene hydrogenation merges organic synthesis with microbial metabolism. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 538–539 · CV · published

53828. Sirasani, Gopal; Tong, Liuchuan; Balskus, Emily P. “A biocompatible alkene hydrogenation merges539organic synthesis with microbial metabolism.” Angew. Chem. Int. Ed. 2014, 53, 7785–7788.

Institution fields

Peer reviewed
yes
First author
Sirasani
Co-authors
Sirasani, Gopal; Tong, Liuchuan; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A biocompatible alkene hydrogenation merges organic synthesis with microbial metabolism.A Biocompatible Alkene Hydrogenation Merges Organic Synthesis with Microbial MetabolismA Biocompatible Alkene Hydrogenation Merges Organic Synthesis with Microbial Metabolism
year cv 201420142014
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20140314810.1002/anie.20140314810.1002/ange.201403148
first author openalex SirasaniSirasaniSirasani

Also recorded as

Citations

OpenAlex
74
Scholar
none
DOI
10.1002/anie.201403148
OpenAlex
W2101231456

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: same_title
2014 Characterization of choline trimethylamine-lyase expands the chemistry of glycyl radical enzymes. ACS Chemical Biology article journal CV OA GS

CV span

lines 541–543 · CV · published

54127. Craciun, Smaranda; *Marks, Jonathan A.; Balskus, Emily P. “Characterization of choline542trimethylamine-lyase expands the chemistry of glycyl radical enzymes.” ACS Chem. Biol. 2014, 9, 1408–5431413.

Institution fields

Peer reviewed
yes
First author
Craciun
Co-authors
Craciun, Smaranda; *Marks, Jonathan A.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Characterization of choline trimethylamine-lyase expands the chemistry of glycyl radical enzymes.Characterization of Choline Trimethylamine-Lyase Expands the Chemistry of Glycyl Radical Enzymes
year cv 20142014
venue crossref ACS Chem. Biol.ACS Chemical BiologyACS Chemical Biology
kind cv articlearticle
DOI crossref 10.1021/cb500113p10.1021/cb500113p
first author openalex CraciunCraciun

Citations

OpenAlex
143
Scholar
none
DOI
10.1021/cb500113p
OpenAlex
W2335124613

Match decisions

  • doi merged · 1.00 · Run 18
2014 Discovery of the lomaiviticin biosynthetic gene cluster in Salinispora pacifica. Tetrahedron article journal CV OA GS

CV span

lines 548–552 · CV · published

54825. Janso, Jeffrey E.; Haltli, Brad A.; Eustáquio, Alessandra S.; Kulowski, Kerry; Waldman, Abraham J.;549Zha, Li; Nakamura, Hitomi; Bernan, Valerie S.; He, Haiyin; Carter, Guy T.; Koehn, Frank E.; Balskus,550Emily P. “Discovery of the lomaiviticin biosynthetic gene cluster in Salinispora pacifica.” Tetrahedron5512014, 70, 4156–4164. Special issue honoring Sarah Reisman’s 2014 Tetrahedron Young Investigator552Award.

Institution fields

Peer reviewed
yes
First author
Janso
Co-authors
Janso, Jeffrey E.; Haltli, Brad A.; Eustáquio, Alessandra S.; Kulowski, Kerry; Waldman, Abraham J.; Zha, Li; Nakamura, Hitomi; Bernan, Valerie S.; He, Haiyin; Carter, Guy T.; Koehn, Frank E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Discovery of the lomaiviticin biosynthetic gene cluster in Salinispora pacifica.Discovery of the lomaiviticin biosynthetic gene cluster in Salinispora pacifica
year cv 20142014
venue crossref TetrahedronTetrahedron
kind cv articlearticle
DOI crossref 10.1016/j.tet.2014.03.00910.1016/j.tet.2014.03.009
first author openalex JansoJanso

Citations

OpenAlex
75
Scholar
none
DOI
10.1016/j.tet.2014.03.009
OpenAlex
W1977447433

Match decisions

  • doi merged · 1.00 · Run 18
2014 Lomaiviticin biosynthesis employs a new strategy for starter unit generation. Organic Letters article journal CV OA GS

CV span

lines 558–559 · CV · published

55823. Waldman, Abraham J.; Balskus, Emily P. “Lomaiviticin biosynthesis employs a new strategy for559starter unit generation.” Org. Lett. 2014, 16, 640–643.

Institution fields

Peer reviewed
yes
First author
Waldman
Co-authors
Waldman, Abraham J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Lomaiviticin biosynthesis employs a new strategy for starter unit generation.Lomaiviticin Biosynthesis Employs a New Strategy for Starter Unit Generation
year cv 20142014
venue crossref Org. Lett.Organic LettersOrganic Letters
kind cv articlearticle
DOI crossref 10.1021/ol403714g10.1021/ol403714g
first author openalex WaldmanWaldman

Citations

OpenAlex
32
Scholar
none
DOI
10.1021/ol403714g
OpenAlex
W2324462346

Match decisions

  • doi merged · 1.00 · Run 18
2014 Mechanistic insight into digoxin inactivation by Eggerthella lenta augments our understanding of its pharmacokinetics. Gut Microbes article journal CV OA GS

CV span

lines 554–556 · CV · published

55424. Haiser, Henry J.; Seim, Kristen L.; Balskus, Emily P.; Turnbaugh, Peter J. “Mechanistic insight into555digoxin inactivation by Eggerthella lenta augments our understanding of its pharmacokinetics." Gut556Microbes 2014, 5, 233–238.

Institution fields

Peer reviewed
yes
First author
Haiser
Co-authors
Haiser, Henry J.; Seim, Kristen L.; Balskus, Emily P.; Turnbaugh, Peter J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Mechanistic insight into digoxin inactivation by Eggerthella lenta augments our understanding of its pharmacokinetics.Mechanistic insight into digoxin inactivation by Eggerthella lenta augments our understanding of its pharmacokinetics
year cv 20142014
venue crossref Gut MicrobesGut Microbes
kind cv articlearticle
DOI crossref 10.4161/gmic.2791510.4161/gmic.27915
first author openalex HaiserHaiser

Citations

OpenAlex
190
Scholar
none
DOI
10.4161/gmic.27915
OpenAlex
W2127813400

Match decisions

  • doi merged · 1.00 · Run 18
2014 Opportunities for merging chemical and biological synthesis. Current Opinion in Biotechnology article journal CV OA GS

CV span

lines 545–546 · CV · published

54526. Wallace, Stephen; Balskus, Emily P. “Opportunities for merging chemical and biological synthesis.”546Curr. Opin. Biotechnol. 2014, 30, 1–8. Invited commentary.

Institution fields

Peer reviewed
yes
First author
Wallace
Co-authors
Wallace, Stephen; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Opportunities for merging chemical and biological synthesis.Opportunities for merging chemical and biological synthesis
year cv 20142014
venue crossref Curr. Opin. Biotechnol.Current Opinion in BiotechnologyCurrent Opinion in Biotechnology
kind cv articlereview
DOI crossref 10.1016/j.copbio.2014.03.00610.1016/j.copbio.2014.03.006
first author openalex WallaceWallace

Citations

OpenAlex
86
Scholar
none
DOI
10.1016/j.copbio.2014.03.006
OpenAlex
W2064680690

Match decisions

  • doi merged · 1.00 · Run 18
2014 Sponge symbionts play defense. Nature Chemical Biology article journal CV OA GS

CV span

lines 535–536 · CV · published

53529. Balskus, Emily P. "Sponge symbionts play defense." Nat. Chem. Biol. 2014, 10, 611–612. News536and views.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Sponge symbionts play defense.Sponge symbionts play defense
year cv 20142014
venue crossref Nat. Chem. Biol.Nature Chemical BiologyNature Chemical Biology
kind cv articlearticle
DOI crossref 10.1038/nchembio.158810.1038/nchembio.1588
first author openalex BalskusBalskus

Citations

OpenAlex
7
Scholar
none
DOI
10.1038/nchembio.1588
OpenAlex
W1973980092

Match decisions

  • doi merged · 1.00 · Run 18
2013 A prodrug resistance mechanism is involved in colibactin biosynthesis and cytotoxicity. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 572–573 · CV · published

57219. Brotherton, Carolyn A.; Balskus, Emily P. “A prodrug resistance mechanism is involved in colibactin573biosynthesis and cytotoxicity.” J. Am. Chem. Soc. 2013, 135, 3359–3362.

Institution fields

Peer reviewed
yes
First author
Brotherton
Co-authors
Brotherton, Carolyn A.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A prodrug resistance mechanism is involved in colibactin biosynthesis and cytotoxicity.A Prodrug Resistance Mechanism Is Involved in Colibactin Biosynthesis and Cytotoxicity
year cv 20132013
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/ja312154m10.1021/ja312154m
first author openalex BrothertonBrotherton

Citations

OpenAlex
192
Scholar
none
DOI
10.1021/ja312154m
OpenAlex
W1966028491

Match decisions

  • doi merged · 1.00 · Run 18
2013 Predicting and manipulating cardiac drug inactivation by the human gut bacterium Eggerthella lenta. Science article journal CV OA GS

CV span

lines 564–566 · CV · published

56421. Haiser, Henry J.; Gootenberg, David B.; Chatman, Kelly; Sirasani, Gopal; Balskus, Emily P.;565Turnbaugh, Peter J. “Predicting and manipulating cardiac drug inactivation by the human gut bacterium566Eggerthella lenta.” Science 2013, 341, 295–298.

Institution fields

Peer reviewed
yes
First author
Haiser
Co-authors
Haiser, Henry J.; Gootenberg, David B.; Chatman, Kelly; Sirasani, Gopal; Balskus, Emily P.; Turnbaugh, Peter J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Predicting and manipulating cardiac drug inactivation by the human gut bacterium Eggerthella lenta.Predicting and Manipulating Cardiac Drug Inactivation by the Human Gut Bacterium Eggerthella lenta
year cv 20132013
venue crossref ScienceScience
kind cv articlearticle
DOI crossref 10.1126/science.123587210.1126/science.1235872
first author openalex HaiserHaiser

Citations

OpenAlex
704
Scholar
none
DOI
10.1126/science.1235872
OpenAlex
W2161185495

Match decisions

  • doi merged · 1.00 · Run 18
2013 Rescuing auxotrophic microorganisms with non-enzymatic chemistry. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 561–562 · CV · published

56122. Lee, Yunmi; *Umeano, Afoma; Balskus, Emily P. “Rescuing auxotrophic microorganisms with non-562enzymatic chemistry.” Angew. Chem. Int. Ed. 2013, 52, 11800–11803.

Institution fields

Peer reviewed
yes
First author
Lee
Co-authors
Lee, Yunmi; *Umeano, Afoma; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Rescuing auxotrophic microorganisms with non-enzymatic chemistry.Rescuing Auxotrophic Microorganisms with Nonenzymatic ChemistryRescuing Auxotrophic Microorganisms with Nonenzymatic Chemistry
year cv 201320132013
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticle
DOI crossref 10.1002/anie.20130703310.1002/anie.20130703310.1002/ange.201307033
first author openalex LeeLeeLee

Also recorded as

Citations

OpenAlex
37
Scholar
none
DOI
10.1002/anie.201307033
OpenAlex
W2015847678

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: platform_twin
2013 Using chemical knowledge to uncover new biological function: Discovery of the cylindrocyclophane biosynthetic pathway. Synlett article journal CV OA GS

CV span

lines 568–570 · CV · published

56820. Nakamura, Hitomi; Balskus, Emily P. “Using chemical knowledge to uncover new biological function:569Discovery of the cylindrocyclophane biosynthetic pathway.” Synlett 2013, 24, 1464–1470. Invited570commentary.

Institution fields

Peer reviewed
yes
First author
Nakamura
Co-authors
Nakamura, Hitomi; Balskus, Emily P.
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Using chemical knowledge to uncover new biological function: Discovery of the cylindrocyclophane biosynthetic pathway.Using Chemical Knowledge to Uncover New Biological Function: Discovery of the Cylindrocyclophane Biosynthetic Pathway
year cv 20132013
venue crossref SynlettSynlett
kind cv articlearticle
DOI crossref 10.1055/s-0033-133887910.1055/s-0033-1338879
first author openalex NakamuraBalskus

Citations

OpenAlex
15
Scholar
none
DOI
10.1055/s-0033-1338879
OpenAlex
W2317061942

Match decisions

  • doi merged · 1.00 · Run 18
2012 Cylindrocyclophane biosynthesis involves functionalization of an unactivated carbon center. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 578–580 · CV · published

57817. Nakamura, Hitomi; Hamer, Hilary A.; Sirasani, Gopal; Balskus, Emily P. “Cylindrocyclophane579biosynthesis involves functionalization of an unactivated carbon center.” J. Am. Chem. Soc. 2012, 134,58018518–18521.

Institution fields

Peer reviewed
yes
First author
Nakamura
Co-authors
Nakamura, Hitomi; Hamer, Hilary A.; Sirasani, Gopal; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Cylindrocyclophane biosynthesis involves functionalization of an unactivated carbon center.Cylindrocyclophane Biosynthesis Involves Functionalization of an Unactivated Carbon Center
year cv 20122012
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/ja308318p10.1021/ja308318p
first author openalex NakamuraNakamura

Citations

OpenAlex
91
Scholar
none
DOI
10.1021/ja308318p
OpenAlex
W2121915606

Match decisions

  • doi merged · 1.00 · Run 18
2012 Microbial conversion of choline to trimethylamine requires a glycyl radical enzyme. Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 575–576 · CV · published

57518. Craciun, Smaranda; Balskus, Emily P. “Microbial conversion of choline to trimethylamine requires a576glycyl radical enzyme.” Proc. Natl. Acad. Sci. USA 2012, 109, 21307–21312.

Institution fields

Peer reviewed
yes
First author
Craciun
Co-authors
Craciun, Smaranda; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Microbial conversion of choline to trimethylamine requires a glycyl radical enzyme.Microbial conversion of choline to trimethylamine requires a glycyl radical enzyme
year cv 20122012
venue crossref Proc. Natl. Acad. Sci. USAProceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articlearticle
DOI crossref 10.1073/pnas.121568910910.1073/pnas.1215689109
first author openalex CraciunCraciun

Citations

OpenAlex
718
Scholar
none
DOI
10.1073/pnas.1215689109
OpenAlex
W2043900297

Match decisions

  • doi merged · 1.00 · Run 18
2011 The biosynthesis of cyanobacterial sunscreen scytonemin in microbial mat communities. FEMS Microbiology Ecology article journal CV OA GS

CV span

lines 584–585 · CV · published

58416. Balskus, Emily P.; Case, Rebecca J.; Walsh, Christopher T. “The biosynthesis of cyanobacterial585sunscreen scytonemin in microbial mat communities.” FEMS Microbiol. Ecol. 2011, 77, 322–332.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Case, Rebecca J.; Walsh, Christopher T.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv The biosynthesis of cyanobacterial sunscreen scytonemin in microbial mat communities.The biosynthesis of cyanobacterial sunscreen scytonemin in intertidal microbial mat communities
year cv 20112011
venue crossref FEMS Microbiol. Ecol.FEMS Microbiology EcologyFEMS Microbiology Ecology
kind cv articlearticle
DOI crossref 10.1111/j.1574-6941.2011.01113.x10.1111/j.1574-6941.2011.01113.x
first author openalex BalskusBalskus

Citations

OpenAlex
79
Scholar
none
DOI
10.1111/j.1574-6941.2011.01113.x
OpenAlex
W2097105739

Match decisions

  • doi merged · 1.00 · Run 18
2010 The genetic and molecular basis for sunscreen biosynthesis in cyanobacteria. Science article journal CV OA GS

CV span

lines 587–588 · CV · published

58715. Balskus, Emily P.; Walsh, Christopher T. “The genetic and molecular basis for sunscreen588biosynthesis in cyanobacteria.” Science 2010, 329, 1653–1656.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Walsh, Christopher T.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The genetic and molecular basis for sunscreen biosynthesis in cyanobacteria.The Genetic and Molecular Basis for Sunscreen Biosynthesis in Cyanobacteria
year cv 20102010
venue crossref ScienceScience
kind cv articlearticle
DOI crossref 10.1126/science.119363710.1126/science.1193637
first author openalex BalskusBalskus

Citations

OpenAlex
383
Scholar
none
DOI
10.1126/science.1193637
OpenAlex
W1983022446

Match decisions

  • doi merged · 1.00 · Run 18
2009 An enzymatic cyclopentyl[b]indole formation involved in scytonemin biosynthesis. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 590–591 · CV · published

59014. Balskus, Emily P.; Walsh, Christopher T. “An enzymatic cyclopentyl[b]indole formation involved in591scytonemin biosynthesis.” J. Am. Chem. Soc. 2009, 131, 14648–14649.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Walsh, Christopher T.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv An enzymatic cyclopentyl[b]indole formation involved in scytonemin biosynthesis.An Enzymatic Cyclopentyl[b]indole Formation Involved in Scytonemin Biosynthesis
year cv 20092009
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/ja906752u10.1021/ja906752u
first author openalex BalskusBalskus

Citations

OpenAlex
91
Scholar
none
DOI
10.1021/ja906752u
OpenAlex
W2153803982

Match decisions

  • doi merged · 1.00 · Run 18
2008 Investigating the initial steps in the biosynthesis of cyanobacterial sunscreen scytonemin. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 593–594 · CV · published

59313. Balskus, Emily P.; Walsh, Christopher T. “Investigating the initial steps in the biosynthesis of594cyanobacterial sunscreen scytonemin.” J. Am. Chem. Soc. 2008, 130, 15260–15261.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Walsh, Christopher T.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Investigating the initial steps in the biosynthesis of cyanobacterial sunscreen scytonemin.Investigating the Initial Steps in the Biosynthesis of Cyanobacterial Sunscreen Scytonemin
year cv 20082008
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/ja807192u10.1021/ja807192u
first author openalex BalskusBalskus

Citations

OpenAlex
138
Scholar
none
DOI
10.1021/ja807192u
OpenAlex
W2119499483

Match decisions

  • doi merged · 1.00 · Run 18
2008 Structural analysis of spiro b-lactone proteasome inhibitors. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 596–597 · CV · published

59612. Groll, Michael; Balskus, Emily P.; Jacobsen, Eric N. “Structural analysis of spiro b-lactone597proteasome inhibitors.” J. Am. Chem. Soc. 2008, 130, 14981–14983.

Institution fields

Peer reviewed
yes
First author
Groll
Co-authors
Groll, Michael; Balskus, Emily P.; Jacobsen, Eric N.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Structural analysis of spiro b-lactone proteasome inhibitors.Structural Analysis of Spiro β-Lactone Proteasome Inhibitors
year cv 20082008
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/ja806059t10.1021/ja806059t
first author openalex GrollGroll

Citations

OpenAlex
51
Scholar
none
DOI
10.1021/ja806059t
OpenAlex
W2114063842

Match decisions

  • doi merged · 1.00 · Run 18
2007 Asymmetric catalysis of the transannular Diels-Alder reaction. Science article journal CV OA GS

CV span

lines 603–604 · CV · published

60310. Balskus, Emily P.; Jacobsen, Eric N. “Asymmetric catalysis of the transannular Diels-Alder reaction.”604Science 2007, 317, 1736–1740.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Jacobsen, Eric N.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Asymmetric catalysis of the transannular Diels-Alder reaction.Asymmetric Catalysis of the Transannular Diels-Alder Reaction
year cv 20072007
venue crossref ScienceScience
kind cv articlearticle
DOI crossref 10.1126/science.114693910.1126/science.1146939
first author openalex BalskusBalskus

Citations

OpenAlex
112
Scholar
none
DOI
10.1126/science.1146939
OpenAlex
W2093717906

Match decisions

  • doi merged · 1.00 · Run 18
2007 Total synthesis of (–)-hennoxazole A. Organic Letters version 2008 Total synthesis of (–)- hennoxazole A. article journal CV OA GS

CV span

lines 610–611 · CV · published

6108. Smith, Thomas E.; Kuo, Wen-Hsin; Bock, Victoria D.; Roizen, Jennifer L.; Balskus, Emily P.;611Theberge, Ashleigh B. “Total synthesis of (–)-hennoxazole A.” Org. Lett. 2007, 9, 1153–1155.

Institution fields

Peer reviewed
yes
First author
Smith
Co-authors
Smith, Thomas E.; Kuo, Wen-Hsin; Bock, Victoria D.; Roizen, Jennifer L.; Balskus, Emily P.; Theberge, Ashleigh B.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Total synthesis of (–)-hennoxazole A.Total Synthesis of (−)-Hennoxazole ATotal Synthesis of (‐)‐Hennoxazole A.
year cv 200720072007
venue crossref Org. Lett.Organic LettersChemInformOrganic Letters
kind cv articlearticlearticle
DOI crossref 10.1021/ol070244p10.1021/ol070244p10.1002/chin.200731170
first author openalex SmithSmithSmith

Also recorded as

Citations

OpenAlex
24
Scholar
none
OpenAlex with related records
65
DOI
10.1021/ol070244p
OpenAlex
W2952450749

Match decisions

  • gemini merged · 0.99 · doi_conflict · Run 18 These records share the same title, journal, year, and DOI for the Journal of Organic Chemistry.
2007 Total synthesis of potent antifungal marine bisoxazole natural products bengazoles A and B. Chemistry – A European Journal article journal CV OA GS

CV span

lines 606–608 · CV · published

6069. Bull, James A.; Balskus, Emily P.; Horan, Richard A. J.; Langner, Martin; Ley, Steven V. “Total607synthesis of potent antifungal marine bisoxazole natural products bengazoles A and B.” Chem.-Eur. J.6082007, 13, 5515–5538.

Institution fields

Peer reviewed
yes
First author
Bull
Co-authors
Bull, James A.; Balskus, Emily P.; Horan, Richard A. J.; Langner, Martin; Ley, Steven V.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Total synthesis of potent antifungal marine bisoxazole natural products bengazoles A and B.Total Synthesis of Potent Antifungal Marine Bisoxazole Natural Products Bengazoles A and B
year cv 20072007
venue crossref Chem.-Eur. J.Chemistry - A European JournalChemistry – A European Journal
kind cv articlearticle
DOI crossref 10.1002/chem.20070003310.1002/chem.200700033
first author openalex BullBull

Citations

OpenAlex
59
Scholar
none
DOI
10.1002/chem.200700033
OpenAlex
W2011936860

Match decisions

  • gemini merged · 0.99 · doi_conflict · Run 18 These records share the same title, journal, year, and DOI for the total synthesis of bengazoles A and B.
2006 Development of a,b-unsaturated, b-silyl imide substrates for enantioselective conjugate additions: Application to the total synthesis of (+)-lactacystin and the discovery of a new proteasome inhibitor. Journal of the American Chemical Society article journal CV OA GS

CV span

lines 617–619 · CV · published

6176. Balskus, Emily P.; Jacobsen, Eric N. “Development of a,b-unsaturated, b-silyl imide substrates for618enantioselective conjugate additions: Application to the total synthesis of (+)-lactacystin and the619discovery of a new proteasome inhibitor.” J. Am. Chem. Soc. 2006, 128, 6810–6811.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Jacobsen, Eric N.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Development of a,b-unsaturated, b-silyl imide substrates for enantioselective conjugate additions: Application to the total synthesis of (+)-lactacystin and the discovery of a new proteasome inhibitor.α,β-Unsaturated β-Silyl Imide Substrates for Catalytic, Enantioselective Conjugate Additions: A Total Synthesis of (+)-Lactacystin and the Discovery of a New Proteasome Inhibitorα,β‐Unsaturated β‐Silyl Imide Substrates for Catalytic, Enantioselective Conjugate Additions: A Total Synthesis of (+)‐Lactacystin and the Discovery of a New Proteasome Inhibitor.
year cv 200620062006
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyChemInformJournal of the American Chemical Society
kind cv articlearticlearticle
DOI crossref 10.1021/ja061970a10.1021/ja061970a10.1002/chin.200640020
first author openalex BalskusBalskusBalskus

Citations

OpenAlex
144
Scholar
none
DOI
10.1021/ja061970a
OpenAlex
W2007150229

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2006 Stereocontrolled total synthesis of bengazole A: A marine bisoxazole natural product displaying potent antifungal properties. Angewandte Chemie International Edition article journal CV OA GS

CV span

lines 613–615 · CV · published

6137. Bull, James A.; Balskus, Emily P.; Horan, Richard A. J.; Langner, Martin; Ley, Steven V.614“Stereocontrolled total synthesis of bengazole A: A marine bisoxazole natural product displaying potent615antifungal properties.” Angew. Chem. Int. Ed. 2006, 45, 6714–6718.

Institution fields

Peer reviewed
yes
First author
Bull
Co-authors
Bull, James A.; Balskus, Emily P.; Horan, Richard A. J.; Langner, Martin; Ley, Steven V.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Stereocontrolled total synthesis of bengazole A: A marine bisoxazole natural product displaying potent antifungal properties.Stereocontrolled Total Synthesis of Bengazole A: A Marine Bisoxazole Natural Product Displaying Potent Antifungal PropertiesStereocontrolled Total Synthesis of Bengazole A: A Marine Bisoxazole Natural Product Displaying Potent Antifungal Properties.Stereocontrolled Total Synthesis of Bengazole A: A Marine Bisoxazole Natural Product Displaying Potent Antifungal Properties
year cv 2006200620072006
venue crossref Angew. Chem. Int. Ed.Angewandte Chemie International EditionChemInformAngewandte ChemieAngewandte Chemie International Edition
kind cv articlearticlearticlearticle
DOI crossref 10.1002/anie.20060205010.1002/anie.20060205010.1002/chin.20070620410.1002/ange.200602050
first author openalex BullBullBullBull

Also recorded as

  • W2949353832 (DOI 10.1002/chin.200706204) · same title · 2007 Stereocontrolled Total Synthesis of Bengazole A: A Marine Bisoxazole Natural Product Displaying Potent Antifungal Properties.
  • W4251915312 (DOI 10.1002/ange.200602050) · same title · 2006 Stereocontrolled Total Synthesis of Bengazole A: A Marine Bisoxazole Natural Product Displaying Potent Antifungal Properties

Citations

OpenAlex
36
Scholar
none
DOI
10.1002/anie.200602050
OpenAlex
W2170852434

Match decisions

  • gemini merged · 0.99 · doi_conflict · Run 18 These records share the same title, journal, year, and DOI for the total synthesis of bengazoles A and B.
2004 Synthesis of the thapsigargins. Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 621–624 · CV · published

6215. Ley, Steven V.; Antonello, Allessandra; Balskus, Emily P.; Booth, David T.; Christensen, Søren B.;622Cleator, Ed; Gold, Helen; Högenauer, Klemens; Hünger, Udo; Myers, Rebecca M.; Oliver, Steven F.;623Simic, Oliver; Smith, Martin D.; Søhoel, Helmer; Woolford, Alison J. A. “Synthesis of the thapsigargins.”624Proc. Natl. Acad. Sci. USA 2004, 101, 12073–12078.

Institution fields

Peer reviewed
yes
First author
Ley
Co-authors
Ley, Steven V.; Antonello, Allessandra; Balskus, Emily P.; Booth, David T.; Christensen, Søren B.; Cleator, Ed; Gold, Helen; Högenauer, Klemens; Hünger, Udo; Myers, Rebecca M.; Oliver, Steven F.; Simic, Oliver; Smith, Martin D.; Søhoel, Helmer; Woolford, Alison J. A.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Synthesis of the thapsigargins.Synthesis of the thapsigargins
year cv 20042004
venue crossref Proc. Natl. Acad. Sci. USAProceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articlearticle
DOI crossref 10.1073/pnas.040330010110.1073/pnas.0403300101
first author openalex LeyLey

Citations

OpenAlex
78
Scholar
none
DOI
10.1073/pnas.0403300101
OpenAlex
W2119165605

Match decisions

  • doi merged · 1.00 · Run 18
2003 A sequential tetra-n-propylammonium perruthenate (TPAP)-Wittig oxidation olefination protocol. Tetrahedron Letters article journal CV OA GS

CV span

lines 626–627 · CV · published

6264. MacCoss, Rachel N.; Balskus, Emily P.; Ley, Steven V. “A sequential tetra-n-propylammonium627perruthenate (TPAP)-Wittig oxidation olefination protocol.” Tet. Lett. 2003, 44, 7779–7781.

Institution fields

Peer reviewed
yes
First author
MacCoss
Co-authors
MacCoss, Rachel N.; Balskus, Emily P.; Ley, Steven V.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv A sequential tetra-n-propylammonium perruthenate (TPAP)-Wittig oxidation olefination protocol.A Sequential Tetra‐n‐propylammonium Perruthenate (TPAP)—Wittig Oxidation Olefination Protocol.A sequential tetra-n-propylammonium perruthenate (TPAP)–Wittig oxidation olefination protocol
year cv 200320042003
venue crossref Tet. Lett.ChemInformTetrahedron LettersTetrahedron Letters
kind cv articlearticlearticle
DOI crossref 10.1016/j.tetlet.2003.08.08110.1002/chin.20040505210.1016/j.tetlet.2003.08.081
first author openalex MacCossMacCossMacCoss

Also recorded as

  • W2141132153 (DOI 10.1002/chin.200405052) · same title · 2004 A Sequential Tetra‐n‐propylammonium Perruthenate (TPAP)—Wittig Oxidation Olefination Protocol.

Citations

OpenAlex
53
Scholar
none
DOI
10.1016/j.tetlet.2003.08.081
OpenAlex
W2949604015

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2002 Synthetic studies toward hennoxazole A. Use of a selective bisoxazole alkylation as the key fragment coupling. HETEROCYCLES article journal CV OA GS

CV span

lines 629–630 · CV · published

6293. Smith, Thomas E.; Balskus, Emily P. “Synthetic studies toward hennoxazole A. Use of a selective630bisoxazole alkylation as the key fragment coupling.” Heterocycles 2002, 57, 1219–1225.

Institution fields

Peer reviewed
yes
First author
Smith
Co-authors
Smith, Thomas E.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Synthetic studies toward hennoxazole A. Use of a selective bisoxazole alkylation as the key fragment coupling.Synthetic Studies toward Hennoxazole A. Use of a Selective Bisoxazole Alkylation as the Key Fragment CouplingSynthetic Studies Toward Hennoxazole A. Use of a Selective Bisoxazole Alkylation as the Key Fragment Coupling.
year cv 200220022002
venue crossref HeterocyclesHeterocyclesChemInformHETEROCYCLES
kind cv articlearticlearticle
DOI crossref 10.3987/com-02-948010.3987/com-02-948010.1002/chin.200245190
first author openalex SmithSmithSmith

Also recorded as

  • W2949178185 (DOI 10.1002/chin.200245190) · same title · 2002 Synthetic Studies Toward Hennoxazole A. Use of a Selective Bisoxazole Alkylation as the Key Fragment Coupling.

Citations

OpenAlex
5
Scholar
none
DOI
10.3987/com-02-9480
OpenAlex
W1964492158

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2001 Intercalation of multiple carbon atoms between the carbonyls of a-diketones. The Journal of Organic Chemistry article journal CV OA GS

CV span

lines 632–633 · CV · published

6322. Balskus, Emily P.; Méndez-Andino, José; Arbit, Ruslan M.; Paquette, Leo A. “Intercalation of multiple633carbon atoms between the carbonyls of a-diketones.” J. Org. Chem. 2001, 66, 6695–6704.

Institution fields

Peer reviewed
yes
First author
Balskus
Co-authors
Balskus, Emily P.; Méndez-Andino, José; Arbit, Ruslan M.; Paquette, Leo A.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Intercalation of multiple carbon atoms between the carbonyls of a-diketones.Intercalation of Multiple Carbon Atoms between the Carbonyls of α-DiketonesIntercalation of Multiple Car-bon Atoms between the Carbonyls of α-Diketones.
year cv 200120012001
venue crossref J. Org. Chem.The Journal of Organic ChemistryThe Journal of Organic ChemistryThe Journal of Organic Chemistry
kind cv articlearticlearticle
DOI crossref 10.1021/jo010494y10.1021/jo010494y10.1021/jo012951g
first author openalex BalskusBalskusBalskus

Also recorded as

  • W4239565588 (DOI 10.1021/jo012951g) · title variant · 2001 Intercalation of Multiple Car-bon Atoms between the Carbonyls of α-Diketones.

Citations

OpenAlex
43
Scholar
none
DOI
10.1021/jo010494y
OpenAlex
W1998233368

Match decisions

  • gemini merged · 0.99 · Run 18 These records share the same title, journal, year, and DOI.
2001 Spin-transition behavior in chains of Fe(II) bridged by 4-substituted 1,2,4-triazoles carrying alkyl tails. New Journal of Chemistry article journal CV OA GS

CV span

lines 635–637 · CV · published

6351. Roubeau, Olivier; Alcazar Gomez, José M.; Balskus, Emily P.; Kolnaar, Jeroen J. A.; Haasnoot, Jaap636G.; Reedijk, Jan. “Spin-transition behavior in chains of Fe(II) bridged by 4-substituted 1,2,4-triazoles637carrying alkyl tails.” New J. Chem. 2001, 144–150.

Institution fields

Peer reviewed
yes
First author
Roubeau
Co-authors
Roubeau, Olivier; Alcazar Gomez, José M.; Balskus, Emily P.; Kolnaar, Jeroen J. A.; Haasnoot, Jaap G.; Reedijk, Jan
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Spin-transition behavior in chains of Fe(II) bridged by 4-substituted 1,2,4-triazoles carrying alkyl tails.Spin-transition behaviour in chains of FeII bridged by 4-substituted 1,2,4-triazoles carrying alkyl tails
year cv 20012001
venue crossref New J. Chem.New Journal of ChemistryNew Journal of Chemistry
kind cv articlearticle
DOI crossref 10.1039/b007094g10.1039/b007094g
first author openalex RoubeauRoubeau

Citations

OpenAlex
110
Scholar
none
DOI
10.1039/b007094g
OpenAlex
W2116845980

Match decisions

  • doi merged · 1.00 · Run 18

In progress

2 items in progress, under review, forthcoming or a working paper · not counted as publications

2024 Development of cell-free platforms for discovering, characterizing, and engineering post-translational modifications bioRxiv working paper CV OA GS

CV span

lines 136–140 · CV · working_paper

136126. Wong, Derek A.; Shaver, Zachary M.; Cabezas, Maria D.; Daniel-Ivad, Martin; Warfel, Katherine F.;137Prasanna, Deepali V.; Sobol, Sarah E.; Fernandez, Regina; Nicol, Robert; DeLisa, Matthew P.; Balskus,138Emily P.; Karim, Ashty S.; Jewett, Michael C. “Development of cell-free platforms for discovering,139characterizing, and engineering post-translational modifications” bioRxiv 2024, preprint.140doi.org/10.1101/2024.03.25.586624

Institution fields

Peer reviewed
no
First author
Wong
Co-authors
Wong, Derek A.; Shaver, Zachary M.; Cabezas, Maria D.; Daniel-Ivad, Martin; Warfel, Katherine F.; Prasanna, Deepali V.; Sobol, Sarah E.; Fernandez, Regina; Nicol, Robert; DeLisa, Matthew P.; Balskus, Emily P.; Karim, Ashty S.; Jewett, Michael C.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Development of cell-free platforms for discovering, characterizing, and engineering post-translational modificationsDevelopment of cell-free platforms for discovering, characterizing, and engineering post-translational modifications
year crossref 20242024
venue cv bioRxivbioRxiv (Cold Spring Harbor Laboratory)
kind cv working_paperworking_paper
DOI cv 10.1101/2024.03.25.58662410.1101/2024.03.25.586624
preprint DOI 10.1101/2024.03.25.58662410.1101/2024.03.25.586624
first author openalex WongWong

Citations

OpenAlex
0
Scholar
none
DOI
10.1101/2024.03.25.586624
OpenAlex
W4393230490

Match decisions

  • doi merged · 1.00 · Run 18
2023 A diversified, widespread microbial gene cluster encodes homologs of methyltransferases involved in methanogenesis. bioRxiv working paper CV OA GS

CV span

lines 147–149 · CV · working_paper

147124. Kountz, Duncan J. and Balskus, Emily P. “A diversified, widespread microbial gene cluster148encodes homologs of methyltransferases involved in methanogenesis.” bioRxiv 2023, preprint.149doi.org/10.1101/2023.07.31.551370

Institution fields

Peer reviewed
no
First author
Kountz
Co-authors
Kountz, Duncan J.; Balskus, Emily P.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv A diversified, widespread microbial gene cluster encodes homologs of methyltransferases involved in methanogenesis.A diversified, widespread microbial gene cluster encodes homologs of methyltransferases involved in methanogenesis
year crossref 20232023
venue cv bioRxivbioRxiv (Cold Spring Harbor Laboratory)
kind cv working_paperworking_paper
DOI cv 10.1101/2023.07.31.55137010.1101/2023.07.31.551370
preprint DOI 10.1101/2023.07.31.55137010.1101/2023.07.31.551370
first author openalex KountzKountz

Citations

OpenAlex
0
Scholar
none
DOI
10.1101/2023.07.31.551370
OpenAlex
W4385459711

Match decisions

  • doi merged · 1.00 · Run 18

Not counted

1 item · dissertations, talks, media, datasets · listed, not counted as publications

2016 Harnessing the amazing work of the 40 trillion chemists in your gut microbiome https://www.statnews.com/2016/09/14/chemists-gut-microbiome/ media not counted CV OA GS

CV span

lines 672–673 · CV · published

672Balskus, Emily P. “Harnessing the amazing work of the 40 trillion chemists in your gut microbiome.”673September 14, 2016. https://www.statnews.com/2016/09/14/chemists-gut-microbiome/

Institution fields

Peer reviewed
no
First author
Balskus
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Harnessing the amazing work of the 40 trillion chemists in your gut microbiome
year cv 2016
venue cv https://www.statnews.com/2016/09/14/chemists-gut-microbiome/
kind cv media
first author cv Balskus

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

Positions

16 from the CV · current position answer

TitleOrganizationYearsRankSourceLines
Thomas Dudley Cabot Professor of Chemistry current Department of Chemistry and Chemical Biology, Harvard University Distinguished named CV 3, 4
Investigator current Howard Hughes Medical Institute 2021– Unknown CV 12
Thomas Dudley Cabot Professor of Chemistry and Chemical Biology current Harvard University, Cambridge, MA 2018– Distinguished named CV 14, 15
Institute Member current Broad Institute of Harvard and MIT 2018– Unknown CV 14, 16
Faculty Associate current Harvard Microbial Sciences Initiative 2018– Unknown CV 14, 17
Member current Harvard Digestive Diseases Center 2018– Unknown CV 14, 18
Member current MIT Center for Microbiome Informatics and Therapeutics 2018– Unknown CV 14, 19
Morris Kahn Associate Professor of Chemistry and Chemical Biology Harvard University, Cambridge, MA 2015–2018 Associate named CV 21, 22
Associate Member Broad Institute of Harvard and MIT 2015–2018 Unknown CV 21, 23
Faculty Associate Harvard Microbial Sciences Initiative 2015–2018 Unknown CV 21, 24
Member Harvard Digestive Diseases Center 2015–2018 Unknown CV 21, 25
Member MIT Center for Microbiome Informatics and Therapeutics 2015–2018 Unknown CV 21, 26
Assistant Professor of Chemistry and Chemical Biology Harvard University, Cambridge, MA 2011–2015 Assistant CV 28, 29
Associate Member Broad Institute of Harvard and MIT 2011–2015 Unknown CV 28, 30
Faculty Associate Harvard Microbial Sciences Initiative 2011–2015 Unknown CV 28, 31
Member Harvard Digestive Diseases Center 2011–2015 Unknown CV 28, 32
Thomas Dudley Cabot Professor of Chemistry and Chemical Biology Distinguished named CV current position 3, 14

Entries needing review

0

Nothing to review.

Entries dropped by a reviewer

0

No dropped entries.