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类固醇硫酸酯酶活性在类固醇生成及类固醇生成急性调节蛋白表达中的潜在作用。

The potential function of steroid sulphatase activity in steroid production and steroidogenic acute regulatory protein expression.

作者信息

Sugawara Teruo, Fujimoto Seiichiro

机构信息

Department of Biochemistry, Hokkaido University Graduate School of Medicine, Kita-ku, Kita 15, Nishi 7, Sapporo 060-8638, Japan.

出版信息

Biochem J. 2004 May 15;380(Pt 1):153-60. doi: 10.1042/BJ20031379.

Abstract

The first step in the biosynthesis of steroid hormones is conversion of cholesterol into pregnenolone. StAR (steroidogenic acute regulatory) protein plays a crucial role in the intra-mitochondrial movement of cholesterol. STS (steroid sulphatase), which is present ubiquitously in mammalian tissues, including the placenta, adrenal gland, testis and ovary, desulphates a number of 3beta-hydroxysteroid sulphates, including cholesterol sulphate. The present study was designed to examine the effect of STS on StAR protein synthesis and steroidogenesis in cells. Steroidogenic activities of COS-1 cells that had been co-transfected with a vector for the cholesterol P450scc (cytochrome P450 side-chain-cleavage enzyme) system, named F2, a StAR expression vector (pStAR), and an STS expression vector (pSTS) were assayed. Whole-cell extracts were subjected to SDS/PAGE and then to Western blot analysis. pSTS co-expressed in COS-1 cells with F2 and pStAR increased pregnenolone synthesis 2-fold compared with that of co-expression with F2 and pStAR. Western blot analysis using COS-1 cells that had been co-transfected with pSTS, F2 and pStAR revealed that StAR protein levels increased, whereas STS and P450scc protein levels did not change. The amount of StAR protein translation products increased when pSTS was added to an in vitro transcription-translation reaction mixture. Pulse-chase experiments demonstrated that the 37 kDa StAR pre-protein disappeared significantly ( P <0.01) more slowly in COS-1 cells that had been transfected with pSTS than in COS-1 cells that had not been transfected with pSTS. The increase in StAR protein level is not a result of an increase in StAR gene expression, but is a result of both an increase in translation and a longer half-life of the 37 kDa pre-StAR protein. In conclusion, STS increases StAR protein expression level and stimulates steroid production.

摘要

类固醇激素生物合成的第一步是将胆固醇转化为孕烯醇酮。类固醇生成急性调节(StAR)蛋白在胆固醇的线粒体内转运中起关键作用。类固醇硫酸酯酶(STS)在包括胎盘、肾上腺、睾丸和卵巢在内的哺乳动物组织中普遍存在,它能使多种3β-羟基类固醇硫酸盐(包括胆固醇硫酸盐)去硫酸化。本研究旨在检测STS对细胞中StAR蛋白合成和类固醇生成的影响。对共转染了胆固醇P450scc(细胞色素P450侧链裂解酶)系统载体(命名为F2)、StAR表达载体(pStAR)和STS表达载体(pSTS)的COS-1细胞的类固醇生成活性进行了测定。对全细胞提取物进行SDS/PAGE,然后进行蛋白质印迹分析。与F2和pStAR共表达相比,在COS-1细胞中与F2和pStAR共表达的pSTS使孕烯醇酮合成增加了2倍。使用共转染了pSTS、F2和pStAR的COS-1细胞进行的蛋白质印迹分析显示,StAR蛋白水平升高,而STS和P450scc蛋白水平未改变。当将pSTS添加到体外转录-翻译反应混合物中时,StAR蛋白翻译产物的量增加。脉冲追踪实验表明,在转染了pSTS的COS-1细胞中,37 kDa的StAR前体蛋白消失得比未转染pSTS的COS-1细胞明显更慢(P<0.01)。StAR蛋白水平的增加不是StAR基因表达增加的结果,而是翻译增加和37 kDa前体StAR蛋白半衰期延长的结果。总之,STS增加StAR蛋白表达水平并刺激类固醇生成。

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