日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Loss of Bacteroides thetaiotaomicron bile acid-altering enzymes impacts bacterial fitness and the global metabolic transcriptome

多形拟杆菌胆汁酸改变酶的缺失影响细菌适应性和整体代谢转录组

Arthur S McMillan, Matthew H Foley, Caroline E Perkins, Casey M Theriot

Bile salt hydrolases shape the bile acid landscape and restrict Clostridioides difficile growth in the murine gut

胆汁盐水解酶塑造胆汁酸景观并限制艰难梭菌在小鼠肠道中的生长

Matthew H Foley #, Morgan E Walker #, Allison K Stewart, Sarah O'Flaherty, Emily C Gentry, Shakshi Patel, Violet V Beaty, Garrison Allen, Meichen Pan, Joshua B Simpson, Caroline Perkins, Molly E Vanhoy, Michael K Dougherty, Sarah K McGill, Ajay S Gulati, Pieter C Dorrestein, Erin S Baker, Matthew R

Using Multidimensional Separations to Distinguish Isomeric Amino Acid-Bile Acid Conjugates and Assess Their Presence and Perturbations in Model Systems

使用多维分离区分异构氨基酸-胆汁酸结合物并评估其在模型系统中的存在和扰动

Allison K Stewart, Matthew H Foley, Michael K Dougherty, Sarah K McGill, Ajay S Gulati, Emily C Gentry, Lee R Hagey, Pieter C Dorrestein, Casey M Theriot, James N Dodds, Erin S Baker0

The microbial-derived bile acid lithocholate and its epimers inhibit Clostridioides difficile growth and pathogenicity while sparing members of the gut microbiota

微生物衍生的胆汁酸石胆酸盐及其差向异构体可抑制艰难梭菌的生长和致病性,同时保护肠道菌群成员

Samantha C Kisthardt, Rajani Thanissery, Colleen M Pike, Matthew H Foley, Casey M Theriot

The microbial derived bile acid lithocholate and its epimers inhibit Clostridioides difficile growth and pathogenicity while sparing members of the gut microbiota

微生物衍生的胆汁酸石胆酸盐及其差向异构体可抑制艰难梭菌的生长和致病性,同时保护肠道菌群成员

Samantha C Kisthardt, Rajani Thanissery, Colleen M Pike, Matthew H Foley, Casey M Theriot

Loss of Bacteroides thetaiotaomicron bile acid altering enzymes impact bacterial fitness and the global metabolic transcriptome

多形拟杆菌胆汁酸改变酶的缺失影响细菌适应性和整体代谢转录组

Arthur S McMillan, Matthew H Foley, Caroline E Perkins, Casey M Theriot

Clostridioides difficile exploits toxin-mediated inflammation to alter the host nutritional landscape and exclude competitors from the gut microbiota

艰难梭菌利用毒素介导的炎症来改变宿主的营养状况,并将竞争对手排除在肠道菌群之外

Joshua R Fletcher, Colleen M Pike, Ruth J Parsons, Alissa J Rivera, Matthew H Foley, Michael R McLaren, Stephanie A Montgomery, Casey M Theriot

Lactobacillus bile salt hydrolase substrate specificity governs bacterial fitness and host colonization

乳酸杆菌胆汁盐水解酶底物特异性决定细菌适应性和宿主定植

Matthew H Foley, Sarah O'Flaherty, Garrison Allen, Alissa J Rivera, Allison K Stewart, Rodolphe Barrangou, Casey M Theriot

Surface glycan-binding proteins are essential for cereal beta-glucan utilization by the human gut symbiont Bacteroides ovatus

表面聚糖结合蛋白对于人类肠道共生菌卵形拟杆菌利用谷物β-葡聚糖至关重要

Kazune Tamura, Matthew H Foley, Bernd R Gardill, Guillaume Dejean, Matthew Schnizlein, Constance M E Bahr, A Louise Creagh, Filip van Petegem, Nicole M Koropatkin, Harry Brumer

Molecular details of a starch utilization pathway in the human gut symbiont Eubacterium rectale

人类肠道共生菌直肠真杆菌中淀粉利用途径的分子细节

Darrell W Cockburn, Nicole I Orlovsky, Matthew H Foley, Kurt J Kwiatkowski, Constance M Bahr, Mallory Maynard, Borries Demeler, Nicole M Koropatkin