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促肾上腺皮质激素对牛肾上腺皮质细胞中17α-羟化酶活性及细胞色素P-450(17α)合成的影响。

Effects of adrenocorticotropin on 17 alpha-hydroxylase activity and cytochrome P-450(17 alpha) synthesis in bovine adrenocortical cells.

作者信息

Zuber M X, Simpson E R, Hall P F, Waterman M R

出版信息

J Biol Chem. 1985 Feb 10;260(3):1842-8.

PMID:2981874
Abstract

The effects of adrenocorticotropin (ACTH) on 17 alpha-hydroxylase activity and cytochrome P-450(17 alpha) synthesis have been studied utilizing bovine adrenocortical cells in primary monolayer culture. A 20-fold stimulation of the conversion of pregnenolone to 17 alpha-hydroxypregnenolone was observed in postmitochondrial supernatant fractions from cells treated with ACTH as compared to controls. This increase in 17 alpha-hydroxylase activity was found to be due to a change in the Vmax and not a change in the Km(app). By immunoisolation of newly synthesized protein from an RNA-directed cell-free translation system we found that the level of P-450(17 alpha) was many-fold greater when RNA from ACTH-stimulated cells was used, as compared to RNA from control cells. A similar pattern was obtained when the rate of P-450(17 alpha) synthesis was analyzed by immunoisolation from radiolabeled cellular protein from ACTH-stimulated cells. When the total amount of P-450(17 alpha) was measured by immunoblotting we found that the levels of enzyme present correlated with the 17 alpha-hydroxylase activity. In addition, we found that these ACTH-mediated effects could be mimicked by treatment of cells with analogs of cyclic AMP. These results indicate that the activity of P-450(17 alpha) is regulated primarily by cyclic AMP-mediated changes in synthesis, probably at the transcriptional level, which in turn has a profound effect on the pattern of steroid secretion. Thus, we believe cytochrome P-450(17 alpha) to be a key regulatory enzyme in the steroidogenic pathway.

摘要

利用原代单层培养的牛肾上腺皮质细胞,研究了促肾上腺皮质激素(ACTH)对17α-羟化酶活性和细胞色素P-450(17α)合成的影响。与对照组相比,在用ACTH处理的细胞的线粒体后上清液组分中,观察到孕烯醇酮向17α-羟孕烯醇酮转化的20倍刺激。发现这种17α-羟化酶活性的增加是由于Vmax的变化而不是Km(app)的变化。通过从RNA指导的无细胞翻译系统中免疫分离新合成的蛋白质,我们发现,与对照细胞的RNA相比,使用来自ACTH刺激细胞的RNA时,P-450(17α)的水平要高许多倍。当通过从ACTH刺激细胞的放射性标记细胞蛋白中免疫分离来分析P-450(17α)的合成速率时,获得了类似的模式。当通过免疫印迹法测量P-450(17α)的总量时,我们发现存在的酶水平与17α-羟化酶活性相关。此外,我们发现这些ACTH介导的效应可以通过用环磷酸腺苷类似物处理细胞来模拟。这些结果表明,P-450(17α)的活性主要受环磷酸腺苷介导的合成变化调节,可能在转录水平,这反过来又对类固醇分泌模式产生深远影响。因此,我们认为细胞色素P-450(17α)是类固醇生成途径中的关键调节酶。

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