自噬
脂肪变性
法尼甾体X受体
脂质代谢
内分泌学
内科学
焊剂(冶金)
下调和上调
调节器
肝星状细胞
化学
新陈代谢
脂肪肝
脂滴
生物
β氧化
TFEB
细胞生物学
肝纤维化
脂质氧化
转染
氧化酶试验
受体
胆汁酸
作者
Zhoumin Niu,Ying Yan,Wei Liu,Qiuming Yao,Jingjing Chen,Siyi Shen,Jing Yu,Mei Ma,Zhuoyang Li,Yu-Ting Wu,Yan Li,Cheng Hu,Hailuan Zeng,Xin Gao,Yuying Li,Jingjing Jiang,Hao Ying
标识
DOI:10.1093/lifemeta/loaf038
摘要
Abstract Dysregulated autophagy contributes to liver steatosis, yet its regulation under distinct metabolic contexts remains poorly defined. Here, we identify bile acids (BAs) as critical modulators of hepatic autophagy. Circulating BA levels are elevated in human subjects with liver steatosis and independently associated with increased hepatic steatosis risk. High-fat diet (HFD) feeding increases circulating BA levels, while simultaneously reducing hepatic autophagic flux in mice, whereas pharmacological inhibition of farnesoid X receptor (FXR) enhances autophagy and alleviates steatosis in the livers of HFD-fed mice. Mechanistically, circulating bile acids promote hepatic acetyl-CoA production through FXR-induced acyl-CoA oxidase 1 (ACOX1), which in turn suppresses autophagy by increasing the mechanistic target of rapamycin complex 1 (mTORC1) signaling. Similar to HFD feeding, prolonged fasting elevates BA levels and hepatic lipid accumulation, while concurrently upregulating hepatic miR-378, a positive regulator of BA synthesis. Although miR-378 exerts a cell-autonomous pro-autophagic effect during short-term fasting, it paradoxically drives lipid accumulation by suppressing hepatic autophagy via BA/FXR/ACOX1/acetyl-CoA axis in a non-cell-autonomous manner during either HFD feeding or prolonged fasting when BA action becomes considerable. Together, our study uncovers BAs as previously unrecognized inhibitor of hepatic autophagy during prolonged fasting and in metabolic dysfunction-associated steatosis liver disease (MASLD), providing novel insights into context-dependent autophagic regulation of hepatic lipid metabolism and potential therapeutic strategies for MASLD.
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