Gut symbionts alleviate MASH through a secondary bile acid biosynthetic pathway

Qixing Nie(Nanchang University), Xi Luo(Peking University), Kai Wang(Peking University), Yong Ding(Peking University), Shumi Jia(Peking University), Qixiang Zhao(Peking University), Meng Li(Peking University), Jinxin Zhang(Peking University), Yingying Zhuo(Peking University), Jun Lin(Peking University), Chenghao Guo(Peking University), Zhiwei Zhang(Peking University), Hui‐Ying Liu(Peking University), Guangyi Zeng(Peking University), Jie You(Wenzhou Medical University), Lulu Sun(Peking University), Hua Lu(Peking University), Ming Ma(Peking University), Yanxing Jia(China Pharmaceutical University), Ming‐Hua Zheng(Wenzhou Medical University), Yanli Pang(Peking University), Jie Qiao(Peking University), Changtao Jiang(Peking University)
Cell
April 22, 2024
Cited by 264Open Access
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Abstract

The gut microbiota has been found to play an important role in the progression of metabolic dysfunction-associated steatohepatitis (MASH), but the mechanisms have not been established. Here, by developing a click-chemistry-based enrichment strategy, we identified several microbial-derived bile acids, including the previously uncharacterized 3-succinylated cholic acid (3-sucCA), which is negatively correlated with liver damage in patients with liver-tissue-biopsy-proven metabolic dysfunction-associated fatty liver disease (MAFLD). By screening human bacterial isolates, we identified Bacteroides uniformis strains as effective producers of 3-sucCA both in vitro and in vivo. By activity-based protein purification and identification, we identified an enzyme annotated as β-lactamase in B. uniformis responsible for 3-sucCA biosynthesis. Furthermore, we found that 3-sucCA is a lumen-restricted metabolite and alleviates MASH by promoting the growth of Akkermansia muciniphila. Together, our data offer new insights into the gut microbiota-liver axis that may be leveraged to augment the management of MASH.


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