Endoplasmic Reticulum Stress Regulates Hepatic Bile Acid Metabolism in Mice

被引:35
作者
Henkel, Anne S. [1 ]
LeCuyer, Brian [1 ]
Olivares, Shantel [1 ]
Green, Richard M. [1 ]
机构
[1] Northwestern Univ, Feinberg Sch Med, Div Gastroenterol & Hepatol, Chicago, IL 60611 USA
来源
CELLULAR AND MOLECULAR GASTROENTEROLOGY AND HEPATOLOGY | 2017年 / 3卷 / 02期
基金
美国国家卫生研究院;
关键词
Unfolded Protein Response; Cyp7a1; 7; alpha-Hydroxy-4-Cholesten-3-1; Bile Acid Synthesis; CHOLESTEROL 7-ALPHA-HYDROXYLASE GENE; UNFOLDED PROTEIN RESPONSE; FARNESOID-X-RECEPTOR; NECROSIS-FACTOR-ALPHA; GROWTH-FACTOR; 19; ER STRESS; MESSENGER-RNA; FEEDBACK-REGULATION; NUCLEAR RECEPTORS; DOWN-REGULATION;
D O I
10.1016/j.jcmgh.2016.11.006
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
BACKGROUND & AIMS: Cholestasis promotes endoplasmic reticulum (ER) stress in the liver, however, the effect of ER stress on hepatic bile acid metabolism is unknown. We aim to determine the effect of ER stress on hepatic bile acid synthesis and transport in mice. METHODS: ER stress was induced pharmacologically in C57BL/6J mice and human hepatoma (HepG2) cells. The hepatic expression of genes controlling bile acid synthesis and transport was determined. To measure the activity of the primary bile acid synthetic pathway, the concentration of 7 alpha-hydroxy-4-cholesten-3-1 was measured in plasma. RESULTS: Induction of ER stress in mice and HepG2 cells rapidly suppressed the hepatic expression of the primary bile acid synthetic enzyme, cholesterol 7 alpha-hydroxylase. Plasma levels of 7 alpha-hydroxy-4-cholesten-3-1 were reduced in mice subjected to ER stress, indicating impaired bile acid synthesis. Induction of ER stress in mice and HepG2 cells increased expression of the bile salt export pump (adenosine triphosphate binding cassette [Abc]b11) and a bile salt efflux pump (Abcc3). The observed regulation of Cyp7a1, Abcb11, and Abcc3 occurred in the absence of hepatic inflammatory cytokine activation and was not dependent on activation of hepatic small heterodimer partner or intestinal fibroblast growth factor 15. Consistent with suppressed bile acid synthesis and enhanced bile acid export from hepatocytes, prolonged ER stress decreased the hepatic bile acid content in mice. CONCLUSIONS: Induction of ER stress in mice suppresses bile acid synthesis and enhances bile acid removal from hepatocytes independently of established bile acid regulatory pathways. These data show a novel function of the ER stress response in regulating bile acid metabolism.
引用
收藏
页码:261 / 271
页数:11
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