首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >Regulation of Human 3β-Hydroxysteroid Dehydrogenase Type 2 by Adrenal Corticosteroids and Product-Feedback by Androstenedione in Human Adrenarche
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Regulation of Human 3β-Hydroxysteroid Dehydrogenase Type 2 by Adrenal Corticosteroids and Product-Feedback by Androstenedione in Human Adrenarche

机译:肾上腺皮质类固醇对人类3β-羟基类固醇脱氢酶的调控及人类肾上腺皮质中雄烯二酮对产物反馈的调节

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摘要

In human adrenarche during childhood, the secretion of dehydroepiandrosterone (DHEA) from the adrenal gland increases due to its increased synthesis and/or decreased metabolism. DHEA is synthesized by 17α-hydroxylase/17,20-lyase, and is metabolized by 3β-hydroxysteroid dehydrogenase type 2 (3βHSD2). In this study, the inhibition of purified human 3βHSD2 by the adrenal steroids, androstenedione, cortisone, and cortisol, was investigated and related to changes in secondary enzyme structure. Solubilized, purified 3βHSD2 was inhibited competitively by androstenedione with high affinity, by cortisone at lower affinity, and by cortisol only at very high, nonphysiologic levels. When purified 3βHSD2 was bound to lipid vesicles, the competitive Ki values for androstenedione and cortisone were slightly decreased, and the Ki value of cortisol was decreased 2.5-fold, although still at a nonphysiologic level. The circular dichroism spectrum that measured 3βHSD2 secondary structure was significantly altered by the binding of cortisol, but not by androstenedione and cortisone. Our import studies show that 3βHSD2 binds in the intermitochondrial space as a membrane-associated protein. Androstenedione inhibits purified 3βHSD2 at physiologic levels, but similar actions for cortisol and cortisone are not supported. In summary, our results have clarified the mechanisms for limiting the metabolism of DHEA during human adrenarche.
机译:在儿童时期的肾上腺中,由于其合成增加和/或代谢降低,肾上腺中脱氢表雄酮(DHEA)的分泌增加。 DHEA由17α-羟化酶/ 17,20-裂合酶合成,并由2β3β-羟类固醇脱氢酶(3βHSD2)代谢。在这项研究中,研究了肾上腺类固醇,雄烯二酮,可的松和皮质醇对纯化人3βHSD2的抑制作用,并与次级酶结构的变化有关。增溶的,纯化的3βHSD2被具有高亲和力的雄烯二酮,处于低亲和力的可的松和仅在非常高的非生理水平的皮质醇竞争性地抑制。当纯化的3βHSD2与脂质囊泡结合时,雄烯二酮和可的松的竞争性Ki值略有降低,而皮质醇的Ki值降低了2.5倍,尽管仍处于非生理水平。皮质醇的结合显着改变了测定3βHSD2二级结构的圆二色性光谱,但雄烯二酮和可的松则没有。我们的进口研究表明3βHSD2作为膜相关蛋白结合在线粒体空间中。雄烯二酮在生理水平上抑制纯化的3βHSD2,但不支持对皮质醇和可的松的类似作用。总而言之,我们的研究结果阐明了限制人类肾上腺皮质激素脱氢表雄酮代谢的机制。

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