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

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

13. Distinct bile salt hydrolase substrate preferences dictate C. difficile pathogenesis

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

26. Molecular details of a starch utilization pathway in the human gut symbiont E ubacterium rectale.

27. Evolution in Fast Forward: a Potential Role for Mutators in Accelerating Staphylococcus aureus Pathoadaptation.

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

29. Multiple TonB Homologs are Important for Carbohydrate Utilization by Bacteroides thetaiotaomicron .

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

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

32. A Cell-Surface GH9 Endo-Glucanase Coordinates with Surface Glycan-Binding Proteins to Mediate Xyloglucan Uptake in the Gut Symbiont Bacteroides ovatus.

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