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Liver receptor homolog 1 transcriptionally regulates human bile salt export pump expression

机译:肝受体同源物1转录调节人胆盐输出泵的表达

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摘要

The metabolic conversion of cholesterol into bile acids in liver is initiated by the rate-limiting cholesterol 7α-hydroxylase (CYP7A1), whereas the bile salt export pump (BSEP) is responsible for the canalicular secretion of bile acids. Liver receptor homolog 1 (LRH-1) is a key transcriptional factor required for the hepatic expression of CYP7A1. We hypothesized that LRH-1 was also involved in the transcriptional regulation of BSEP. In support of our hypothesis, we found that overexpression of LRH-1 induced, whereas knockdown of LRH-1 decreased, BSEP expression. Consistent with its role in transcriptional regulation, LRH-1 dose-dependently transactivated the BSEP promoter. In addition, such transactivation by LRH-1 was required for maximal induction of BSEP expression through the bile acid/farnesoid X receptor (FXR) activation pathway. Bioinformatic and mutational analysis led to the identification of a functional liver receptor homolog 1-responsive element (LRHRE) in the BSEP promoter. Specific binding of LRH-1 to the LRHRE and recruitment of LRH-1 to the BSEP promoter were demonstrated by electrophoretic mobility shift assay and chromatin immunoprecipitation assay, respectively. In conclusion, LRH-1 transcriptionally activated the BSEP promoter and functioned as a modulator in bile acid/FXR-mediated BSEP regulation. These results suggest that LRH-1 plays a supporting role to FXR in maintaining hepatic bile acid levels by coordinately regulating CYP7A1 and BSEP for bile acid synthesis and elimination, respectively.
机译:胆固醇在肝脏中的代谢转化是由限速胆固醇7α-羟化酶(CYP7A1)引发的,而胆盐输出泵(BSEP)则是胆管酸的胆管分泌的原因。肝受体同源物1(LRH-1)是CYP7A1肝表达所需的关键转录因子。我们假设LRH-1也参与了BSEP的转录调控。为支持我们的假设,我们发现诱导了LRH-1的过表达,而LRH-1的敲低则降低了BSEP表达。与它在转录调控中的作用一致,LRH-1剂量依赖性地激活BSEP启动子。另外,通过胆汁酸/法呢类X受体(FXR)激活途径最大程度地诱导BSEP表达需要LRH-1进行这种反式激活。生物信息学和突变分析导致在BSEP启动子中功能肝受体同源1反应元件(LRHRE)的鉴定。分别通过电泳迁移率变动测定和染色质免疫沉淀测定证明了LRH-1与LRHRE的特异性结合和LRH-1向BSEP启动子的募集。总之,LRH-1转录激活BSEP启动子,并在胆汁酸/ FXR介导的BSEP调节中起调节剂的作用。这些结果表明,LRH-1通过分别调节CYP7A1和BSEP分别调节胆汁酸的合成和消除,在维持肝胆汁酸水平方面对FXR发挥支持作用。

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