首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Cholic acid mediates negative feedback regulation of bile acid synthesis in mice.
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Cholic acid mediates negative feedback regulation of bile acid synthesis in mice.

机译:胆酸介导小鼠胆汁酸合成的负反馈调节。

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摘要

Cholesterol is converted into dozens of primary and secondary bile acids through pathways subject to negative feedback regulation mediated by the nuclear receptor farnesoid X receptor (FXR) and other effectors. Disruption of the sterol 12alpha-hydroxylase gene (Cyp8b1) in mice prevents the synthesis of cholate, a primary bile acid, and its metabolites. Feedback regulation of the rate-limiting biosynthetic enzyme cholesterol 7alpha-hydroxylase (CYP7A1) is lost in Cyp8b1(-/-) mice, causing expansion of the bile acid pool and alterations in cholesterol metabolism. Expression of other FXR target genes is unaltered in these mice. Cholate restores CYP7A1 regulation in vivo and in vitro. The results implicate cholate as an important negative regulator of bile acid synthesis and provide preliminary evidence for ligand-specific gene activation by a nuclear receptor.
机译:胆固醇通过核受体法呢醇 X 受体 (FXR) 和其他效应物介导的负反馈调节途径转化为数十种初级和次级胆汁酸。小鼠中甾醇 12α-羟化酶基因 (Cyp8b1) 的破坏会阻止胆酸盐(一种伯胆汁酸)及其代谢物的合成。限速生物合成酶胆固醇7α-羟化酶(CYP7A1)的反馈调节在Cyp8b1(-/-)小鼠中丢失,导致胆汁酸库的扩张和胆固醇代谢的改变。其他FXR靶基因的表达在这些小鼠中没有改变。胆酸盐在体内和体外恢复CYP7A1调节。研究结果表明胆酸盐是胆汁酸合成的重要负调节因子,并为核受体激活配体特异性基因提供了初步证据。

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