Hepatocellular cystathionine γ lyase/hydrogen sulfide attenuates nonalcoholic fatty liver disease by activating farnesoid X receptor

法尼甾体X受体 胱硫醚β合酶 非酒精性脂肪肝 脂肪肝 胆汁酸 胱硫醚γ裂解酶 内科学 内分泌学 胆酸 化学 脂肪变性 脱氧胆酸 脂质代谢 医学 生物化学 生物 核受体 半胱氨酸 基因 转录因子 疾病
作者
Wenjing Xu,Changting Cui,Chunmei Cui,Zhenzhen Chen,Haizeng Zhang,Qinghua Cui,Guoheng Xu,Jianglin Fan,Yu Han,Liang‐Jie Tang,Giovanni Targher,Christopher D. Byrne,Ming‐Hua Zheng,Liming Yang,Jun Cai,Bin Geng
出处
期刊:Hepatology [Wiley]
卷期号:76 (6): 1794-1810 被引量:35
标识
DOI:10.1002/hep.32577
摘要

Hydrogen sulfide (H2 S) plays a protective role in NAFLD. However, whether cystathionine γ lyase (CSE), a dominant H2 S generating enzyme in hepatocytes, has a role in the pathogenesis of NAFLD is currently unclear.We showed that CSE protein expression is dramatically downregulated, especially in fibrotic areas, in livers from patients with NAFLD. In high-fat diet (HFD)-induced NAFLD mice or an oleic acid-induced hepatocyte model, the CSE/H2 S pathway is also downregulated. To illustrate a regulatory role for CSE in NAFLD, we generated a hepatocyte-specific CSE knockout mouse (CSELKO ). Feeding an HFD to CSELKO mice, they showed more hepatic lipid deposition with increased activity of the fatty acid de novo synthesis pathway, increased hepatic insulin resistance, and higher hepatic gluconeogenic ability compared to CSELoxp control mice. By contrast, H2 S donor treatment attenuated these phenotypes. Furthermore, the protection conferred by H2 S was blocked by farnesoid X receptor (FXR) knockdown. Consistently, serum deoxycholic acid and lithocholic acid (FXR antagonists) were increased, and tauro-β-muricholic acid (FXR activation elevated) was reduced in CSELKO . CSE/H2 S promoted a post-translation modification (sulfhydration) of FXR at Cys138/141 sites, thereby enhancing its activity to modulate expression of target genes related to lipid and glucose metabolism, inflammation, and fibrosis. Sulfhydration proteomics in patients' livers supported the CSE/H2 S modulation noted in the CSELKO mice.FXR sulfhydration is a post-translational modification affected by hepatic endogenous CSE/H2 S that may promote FXR activity and attenuate NAFLD. Hepatic CSE deficiency promotes development of nonalcoholic steatohepatitis. The interaction between H2 S and FXR may be amenable to therapeutic drug treatment in NAFLD.
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