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一种信号转导和转录激活因子介导生长激素对肝脏细胞色素P450 3A10/石胆酸6β-羟化酶基因表达的性别差异调节。

A STAT factor mediates the sexually dimorphic regulation of hepatic cytochrome P450 3A10/lithocholic acid 6 beta-hydroxylase gene expression by growth hormone.

作者信息

Subramanian A, Teixeira J, Wang J, Gil G

机构信息

Department of Biochemistry and Molecular Biology, University of Massachusetts Medical School, Worcester 01655, USA.

出版信息

Mol Cell Biol. 1995 Sep;15(9):4672-82. doi: 10.1128/MCB.15.9.4672.

Abstract

Adult male rodents have a pulsatile profile of growth hormone (GH) release, whereas female rodents have a relatively steady-state pattern with uniform, albeit lower levels of GH. The expression of a number of sexually differentiated hepatic proteins is primarily determined by these plasma GH profiles and only secondarily regulated by gonadal hormones. An important subset of these sexually dimorphic proteins is cytochrome P450s. CYP3A10/6 beta-hydroxylase is a cytochrome P450 that catalyzes the 6 beta-hydroxylation of lithocholic acid. CYP3A10/6 beta-hydroxylase is expressed only in male hamsters; however, mimicking the male GH secretion pattern in females induces expression of the gene to male levels. Using chimeric CYP3A10/6 beta-hydroxylase promoter/luciferase reporter genes transfected into hamster primary hepatocytes, we have shown a GH-mediated induction of promoter activity. A combination of 5'-deletion constructs, heterologous promoter constructs, and specific mutagenesis was used to localize the DNA element involved in the GH-mediated regulation of CYP3A10/6 beta-hydroxylase promoter activity, which resembles a STAT binding site. Footprint and gel shift analyses confirmed that the expression of the protein binding to this site is regulated by GH and that the DNA-protein complex can be partially supershifted by anti-STAT-5 antibodies. This protein is 50% more abundant in male than in female hamster livers, is absent in hypophysectomized female livers, and is restored when hypophysectomized females are injected with GH in a manner that masculinizes female hamsters in terms of CYP3A10/6 beta-hydroxylase expression. The system characterized and described here is ideally suited for dissecting the molecular details governing the sexually dimorphic expression of liver-specific genes.

摘要

成年雄性啮齿动物的生长激素(GH)释放呈脉冲式,而雌性啮齿动物的GH释放模式相对稳定,水平较为均匀,尽管较低。许多性别分化的肝脏蛋白的表达主要由这些血浆GH水平决定,其次才受性腺激素调节。这些性别二态性蛋白的一个重要子集是细胞色素P450。CYP3A10/6β-羟化酶是一种细胞色素P450,可催化石胆酸的6β-羟化反应。CYP3A10/6β-羟化酶仅在雄性仓鼠中表达;然而,模仿雄性GH分泌模式可使雌性该基因的表达诱导至雄性水平。通过将嵌合的CYP3A10/6β-羟化酶启动子/荧光素酶报告基因转染到仓鼠原代肝细胞中,我们发现了GH介导的启动子活性诱导。结合5'-缺失构建体、异源启动子构建体和特异性诱变,用于定位参与GH介导的CYP3A10/6β-羟化酶启动子活性调节的DNA元件,该元件类似于STAT结合位点。足迹分析和凝胶迁移分析证实,与该位点结合的蛋白的表达受GH调节,并且DNA-蛋白复合物可被抗STAT-5抗体部分超迁移。该蛋白在雄性仓鼠肝脏中的丰度比雌性高50%,在垂体切除的雌性肝脏中不存在,当垂体切除的雌性以使CYP3A10/6β-羟化酶表达呈现雄性化的方式注射GH时,该蛋白恢复表达。这里表征和描述的系统非常适合剖析控制肝脏特异性基因性别二态性表达的分子细节。

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