生物
微生物群
肠道微生物群
生物化学
人体胃肠道
酶
氨基水解酶
基因组
细菌
超家族
微生物学
人体微生物群
二价金属
水解酶
脊椎动物
人类微生物组计划
计算生物学
胃肠道
保守序列
遗传学
肠道菌群
机制(生物学)
微生物代谢
化学
作者
Zheng Cui,Christopher J. Meng,Stephania M. Irwin,Hannah E. Augustijn,Panagiotis Papageorgiou Papageorgiou,Anh T. P. Nguyen,Ruocheng Yu,Miguel A. Aguilar Ramos,Heather J. Kulik,Emily P. Balskus
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2026-04-06
标识
DOI:10.64898/2026.04.05.716592
摘要
Abstract Bile salt hydrolases (BSHs) are gut microbial enzymes that catalyze the deconjugation of glycine-or taurine-conjugated bile acids (BAs), a key step in shaping the BA pool in the human gastrointestinal tract and modulating host-gut microbiome interactions. 1–3 All known BSHs are members of the N-terminal nucleophile (Ntn) hydrolase superfamily and share a conserved architecture and mechanism involving a nucleophilic active site cysteine. 4,5 This knowledge has guided predictions and study of BSH activity in the gut microbiome 6,7 as well as the development of BSH inhibitors 8 . Here, we report the discovery and characterization of a previously unknown BSH from the human gut bacterium Bilophila wadsworthia that belongs to the metal-dependent amidohydrolase superfamily and exhibits robust and specific activity toward taurine-conjugated bile salts. We show this secreted enzyme, metalloBSH, utilizes a metallocofactor for BA deconjugation, a mechanism distinct from that of canonical Ntn-type BSHs. MetalloBSHs are conserved in B. wadsworthia and present in many other Desulfovibrionaceae found in vertebrate gut microbiomes. Analysis of multi-omic datasets indicates metalloBSHs are expressed in vivo and correlate with BA metabolism. Overall, our findings reshape our understanding of BSH activity in the gut microbiome and highlight the promise of activity guided discovery in revealing previously overlooked gut microbial enzymes.
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