A dietary fiber-deprived gut microbiota degrades the colonic mucus barrier and enhances pathogen susceptibility MS Desai, AM Seekatz, NM Koropatkin, N Kamada, CA Hickey, M Wolter, ... Cell 167 (5), 1339-1353. e21, 2016 | 2758 | 2016 |
Dietary fiber-induced improvement in glucose metabolism is associated with increased abundance of Prevotella P Kovatcheva-Datchary, A Nilsson, R Akrami, YS Lee, F De Vadder, ... Cell metabolism 22 (6), 971-982, 2015 | 1561 | 2015 |
How glycan metabolism shapes the human gut microbiota NM Koropatkin, EA Cameron, EC Martens Nature Reviews Microbiology 10 (5), 323-335, 2012 | 1531 | 2012 |
Mucosal glycan foraging enhances fitness and transmission of a saccharolytic human gut bacterial symbiont EC Martens, HC Chiang, JI Gordon Cell host & microbe 4 (5), 447-457, 2008 | 1007 | 2008 |
Recognition and degradation of plant cell wall polysaccharides by two human gut symbionts EC Martens, EC Lowe, H Chiang, NA Pudlo, M Wu, NP McNulty, ... PLoS biology 9 (12), e1001221, 2011 | 857 | 2011 |
Regulated virulence controls the ability of a pathogen to compete with the gut microbiota N Kamada, YG Kim, HP Sham, BA Vallance, JL Puente, EC Martens, ... Science 336 (6086), 1325-1329, 2012 | 754 | 2012 |
Evolution of symbiotic bacteria in the distal human intestine J Xu, MA Mahowald, RE Ley, CA Lozupone, M Hamady, EC Martens, ... PLoS biology 5 (7), e156, 2007 | 743 | 2007 |
Complex glycan catabolism by the human gut microbiota: the Bacteroidetes Sus-like paradigm EC Martens, NM Koropatkin, TJ Smith, JI Gordon Journal of Biological Chemistry 284 (37), 24673-24677, 2009 | 724 | 2009 |
US immigration westernizes the human gut microbiome P Vangay, AJ Johnson, TL Ward, GA Al-Ghalith, RR Shields-Cutler, ... Cell 175 (4), 962-972. e10, 2018 | 714 | 2018 |
Bacteroides in the infant gut consume milk oligosaccharides via mucus-utilization pathways A Marcobal, M Barboza, ED Sonnenburg, N Pudlo, EC Martens, P Desai, ... Cell host & microbe 10 (5), 507-514, 2011 | 665 | 2011 |
Interactions of commensal and pathogenic microorganisms with the intestinal mucosal barrier EC Martens, M Neumann, MS Desai Nature Reviews Microbiology 16 (8), 457-470, 2018 | 624 | 2018 |
Complex pectin metabolism by gut bacteria reveals novel catalytic functions D Ndeh, A Rogowski, A Cartmell, AS Luis, A Baslé, J Gray, I Venditto, ... Nature 544 (7648), 65-70, 2017 | 618 | 2017 |
Human gut Bacteroidetes can utilize yeast mannan through a selfish mechanism F Cuskin, EC Lowe, MJ Temple, Y Zhu, EA Cameron, NA Pudlo, NT Porter, ... Nature 517 (7533), 165-169, 2015 | 553 | 2015 |
Prebiotics: why definitions matter RW Hutkins, JA Krumbeck, LB Bindels, PD Cani, G Fahey Jr, YJ Goh, ... Current opinion in biotechnology 37, 1-7, 2016 | 548 | 2016 |
A discrete genetic locus confers xyloglucan metabolism in select human gut Bacteroidetes J Larsbrink, TE Rogers, GR Hemsworth, LS McKee, AS Tauzin, O Spadiut, ... Nature 506 (7489), 498-502, 2014 | 533 | 2014 |
Expansion of bacteriophages is linked to aggravated intestinal inflammation and colitis L Gogokhia, K Buhrke, R Bell, B Hoffman, DG Brown, C Hanke-Gogokhia, ... Cell host & microbe 25 (2), 285-299. e8, 2019 | 481 | 2019 |
Glycan complexity dictates microbial resource allocation in the large intestine A Rogowski, JA Briggs, JC Mortimer, T Tryfona, N Terrapon, EC Lowe, ... Nature communications 6 (1), 7481, 2015 | 425 | 2015 |
Starch catabolism by a prominent human gut symbiont is directed by the recognition of amylose helices NM Koropatkin, EC Martens, JI Gordon, TJ Smith Structure 16 (7), 1105-1115, 2008 | 399 | 2008 |
Functional genomic and metabolic studies of the adaptations of a prominent adult human gut symbiont, Bacteroides thetaiotaomicron, to the suckling period MK Bjursell, EC Martens, JI Gordon Journal of biological chemistry 281 (47), 36269-36279, 2006 | 388 | 2006 |
NLRP6 protects Il10−/− mice from colitis by limiting colonization of Akkermansia muciniphila SS Seregin, N Golovchenko, B Schaf, J Chen, NA Pudlo, J Mitchell, ... Cell reports 19 (4), 733-745, 2017 | 383 | 2017 |