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FXR Primes the Liver for Intestinal FGF15 Signaling by Transient Induction of β-Klotho

FGF19型 法尼甾体X受体 生物 内分泌学 内科学 小异二聚体伴侣 成纤维细胞生长因子 G蛋白偶联胆汁酸受体 信号转导 胆固醇7α羟化酶 细胞生物学 受体 核受体 胆汁酸 生物化学 转录因子 基因 医学
作者
Ting Fu,Young‐Chae Kim,Sangwon Byun,Dong-Hyun Kim,Sunmi Seok,Kelly Suino-Powell,H. Eric Xu,Byron Kemper,Jongsook Kim Kemper
出处
期刊:Molecular Endocrinology [Oxford University Press]
卷期号:30 (1): 92-103 被引量:45
标识
DOI:10.1210/me.2015-1226
摘要

The bile acid (BA)-sensing nuclear receptor, farnesoid X receptor (FXR), regulates postprandial metabolic responses, including inhibition of BA synthesis, by inducing the intestinal hormone, fibroblast growth factor (FGF)15 (FGF19 in human). In this study, we tested a novel hypothesis that FXR not only induces intestinal FGF15 but also primes the liver for effectively responding to the signal by transcriptional induction of the obligate coreceptor for FGF15, β-Klotho (βKL). Activation of FXR by a synthetic agonist, GW4064, in mice increased occupancy of FXR and its DNA-binding partner, retinoid X receptor-α, at FGF15-signaling component genes, particularly βKL, and induced expression of these genes. Interestingly, mRNA levels of Fgfr4, the FGF15 receptor, were not increased by GW4064, but protein levels increased as a result of βKL-dependent increased protein stability. Both FGF receptor 4 and βKL protein levels were substantially decreased in FXR-knockout (KO) mice, and FGF19 signaling, monitored by phosphorylated ERK, was blunted in FXR-KO mice, FXR-KO mouse hepatocytes, and FXR-down-regulated human hepatocytes. Overexpression of βKL in FXR-lacking hepatocytes partially restored FGF19 signaling and inhibition by FGF19 of Cyp7a1, which encodes the rate-limiting BA biosynthetic enzyme. In mice, transient inductions of intestinal Fgf15 and hepatic βKL were temporally correlated after GW4064 treatment, and pretreatment of hepatocytes with GW4064 before FGF19 treatment enhanced FGF19 signaling, which was abolished by transcriptional inhibition or βKL down-regulation. This study identifies FXR as a gut-liver metabolic coordinator for FGF15/19 action that orchestrates transient induction of hepatic βKL and intestinal Fgf15/19 in a temporally correlated manner.
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