CYP8B1 downregulation mediates the metabolic effects of vertical sleeve gastrectomy in mice

袖状胃切除术 胃切除术 医学 并发症 下调和上调 生物化学 外科 内科学 化学 基因 癌症 胃分流术 肥胖 减肥
作者
Yanjun Liu,Jui Tu,Linsen Shi,Zhipeng Fang,Mingjie Fan,Jianying Zhang,Lili Ding,Yiqiang Chen,Yangmeng Wang,Eryun Zhang,Senlin Xu,Nisha Sharma,John D. Gillece,Lauren Reining,Lihua Jin,Wendong Huang
出处
期刊:Hepatology [Lippincott Williams & Wilkins]
被引量:5
标识
DOI:10.1097/hep.0000000000000627
摘要

Background and Aims: Although the benefits of vertical sleeve gastrectomy (VSG) surgery are well known, the molecular mechanisms by which VSG alleviates obesity and its complications remain unclear. We aim to determine the role of CYP8B1 (cytochrome P450, family 8, subfamily B, polypeptide 1) in mediating the metabolic benefits of VSG. Approach and Results: We found that expression of CYP8B1, a key enzyme in controlling the 12α-hydroxylated (12α-OH) bile acid (BA) to non-12α-OH BA ratio, was strongly downregulated after VSG. Using genetic mouse models of CYP8B1 overexpression, knockdown, and knockout, we demonstrated that overexpression of CYP8B1 dampened the metabolic improvements associated with VSG. In contrast, short hairpin RNA–mediated CYP8B1 knockdown improved metabolism similar to those observed after VSG. Cyp8b1 deficiency diminished the metabolic effects of VSG. Further, VSG-induced alterations to the 12α-OH/non-12α-OH BA ratio in the BA pool depended on CYP8B1 expression level. Consequently, intestinal lipid absorption was restricted, and the gut microbiota (GM) profile was altered. Fecal microbiota transplantation from wild type-VSG mice (vs. fecal microbiota transplantation from wild-type–sham mice) improved metabolism in recipient mice, while there were no differences between mice that received fecal microbiota transplantation from knockout-sham and knockout-VSG mice. Conclusions: CYP8B1 is a critical downstream target of VSG. Modulation of BA composition and gut microbiota profile by targeting CYP8B1 may provide novel insight into the development of therapies that noninvasively mimic bariatric surgery to treat obesity and its complications.
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