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首页> 外文期刊>Genome Biology >Liver ChIP-seq analysis in FGF19-treated mice reveals SHP as a global transcriptional partner of SREBP-2
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Liver ChIP-seq analysis in FGF19-treated mice reveals SHP as a global transcriptional partner of SREBP-2

机译:FGF19处理的小鼠的肝脏ChIP-seq分析显示SHP是SREBP-2的全球转录伴侣

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Background: Fibroblast growth factor-19 (FGF19) is an intestinal hormone that mediates postprandial metabolic responses in the liver. The unusual orphan nuclear receptor, small heterodimer partner (SHP), acts as a co-repressor for many transcriptional factors and has been implicated in diverse biological pathways including FGF19-mediated repression of bile acid synthesis. To explore global functions of SHP in mediating FGF19 action, we identify genome-wide SHP binding sites in hepatic chromatin in mice treated with vehicle or FGF19 by Ch IP-seq analysis. Results: The overall pattern of SHP binding sites between these two groups is similar, but SHP binding is enhanced at the sites by addition of FGF19. SHP binding is detected preferentially in promoter regions that are enriched in motifs for unexpected non-nuclear receptors. We observe global co-localization of SHP sites with published sites for SREBP-2, a master transcriptional activator of cholesterol biosynthesis. FGF19 increases functional interaction between endogenous SHP and SREBP-2 and inhibits SREBP-2 target genes, and these effects were blunted in SHP-knockout mice. Furthermore, FGF19-induced phosphorylation of SHP at Thr-55 is shown to be important for its functional interaction with SREBP-2 and reduction of liver/serum cholesterol levels. Conclusion: This study reveals SHP as a global transcriptional partner of SREBP-2 in regulation of sterol biosynthetic gene networks and provides a potential mechanism for cholesterol-lowering action of FGF19.
机译:背景:成纤维细胞生长因子19(FGF19)是一种肠道激素,可在肝脏中介导餐后代谢反应。不寻常的孤儿核受体,小异二聚体伴侣(SHP),可作为许多转录因子的共阻遏物,并与多种生物途径有关,包括FGF19介导的胆汁酸合成抑制。为了探索SHP在介导FGF19作用中的全球功能,我们通过Ch IP-seq分析鉴定了用载体或FGF19处理的小鼠肝染色质中的全基因组SHP结合位点。结果:两组之间SHP结合位点的总体模式相似,但是通过添加FGF19增强了SHP结合位点。优选在富含意想不到的非核受体的基序的启动子区域中检测到SHP结合。我们观察到SHP位点与SREBP-2(胆固醇生物合成的主要转录激活因子)的已发表位点的全球共定位。 FGF19增加内源性SHP与SREBP-2之间的功能相互作用,并抑制SREBP-2靶基因,而在SHP敲除小鼠中这些作用减弱了。此外,在Thr-55处,FGF19诱导的SHP磷酸化显示出与SREBP-2的功能相互作用以及降低肝脏/血清胆固醇水平的重要性。结论:这项研究揭示了SHP是SREBP-2的全球转录伴侣,可调节固醇生物合成基因网络,并为FGF19降低胆固醇的作用提供了潜在的机制。

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