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7α-和7β-羟基表雄酮作为人11β-羟基类固醇脱氢酶1型的底物和抑制剂。

7alpha- and 7beta-hydroxy-epiandrosterone as substrates and inhibitors for the human 11beta-hydroxysteroid dehydrogenase type 1.

作者信息

Hennebert Olivier, Pernelle Christine, Ferroud Clotilde, Morfin Robert

机构信息

Chaire de Génie Biologique, EA-3199, Conservatoire National des Arts et Métiers, 2 rue Conté, 75003 Paris, France.

出版信息

J Steroid Biochem Mol Biol. 2007 Jun-Jul;105(1-5):159-65. doi: 10.1016/j.jsbmb.2006.11.021. Epub 2007 May 17.

Abstract

The human 11beta-hydroxysteroid dehydrogenase type 1 (11beta-HSD1) catalyzes both the NADP(H)-dependent oxido-reduction of cortisol and cortisone and the inter-conversion of 7alpha- and 7beta-hydroxy-dehydroepiandrosterone (DHEA) through a 7-oxo-DHEA intermediate. As shown with human liver and intestine fractions, 7alpha-hydroxy-epiandrosterone (7alpha-hydroxy-EpiA) and 7beta-hydroxy-EpiA were readily inter-converted with no evidence for a 7-oxo-EpiA intermediate. Whether this inter-conversion resulted from action of the 11beta-HSD1 or from an unknown epimerase is unresolved. Furthermore, whether these steroids could inhibit the cortisol-cortisone oxido-reduction remains a question. The recombinant human 11beta-HSD1 was used to test these questions. NADP(+) supplementation only provided the production of 7beta-hydroxy-EpiA out of 7alpha-hydroxy-EpiA with a V(max)/K(M) ratio at 0.1. With NADPH supplementation, both 7alpha-hydroxy-EpiA and 7beta-hydroxy-EpiA were formed in low amounts from 7beta-hydroxy-EpiA and 7alpha-hydroxy-EpiA, respectively. These inter-conversions occurred without a trace of the putative 7-oxo-EpiA intermediate. In contrast, the 7-oxo-EpiA substrate was efficiently reduced into 7alpha-hydroxy-EpiA and 7beta-hydroxy-EpiA, with V(max)/K(M) ratios of 23.6 and 5.8, respectively. Competitive and mixed type inhibitions of the 11beta-HSD1-mediated cortisol oxidation were exerted by 7alpha-hydroxy-EpiA and 7beta-hydroxy-EpiA, respectively. The 11beta-HSD1-mediated cortisone reduction was inhibited in a competitive manner by 7-oxo-EpiA. These findings suggest that the active site of the human 11beta-HSD1 may carry out directly the epimeric transformation of 7-hydroxylated EpiA substrates. The low amounts of these steroids in human do not support a physiological importance for modulation of the glucocorticoid status in tissues.

摘要

人11β-羟基类固醇脱氢酶1型(11β-HSD1)催化皮质醇和可的松的NADP(H)依赖性氧化还原反应,以及通过7-氧代脱氢表雄酮中间体实现7α-和7β-羟基脱氢表雄酮(DHEA)的相互转化。如在人肝脏和肠组织匀浆中所示,7α-羟基表雄酮(7α-羟基-EpiA)和7β-羟基表雄酮(7β-羟基-EpiA)很容易相互转化,没有证据表明存在7-氧代-EpiA中间体。这种相互转化是由11β-HSD1的作用还是由一种未知的差向异构酶引起的尚未解决。此外,这些类固醇是否能抑制皮质醇-可的松的氧化还原反应仍是一个问题。重组人11β-HSD1被用于测试这些问题。补充NADP(+)时,仅能使7α-羟基-EpiA生成7β-羟基-EpiA,V(max)/K(M)比值为0.1。补充NADPH时,7β-羟基-EpiA和7α-羟基-EpiA分别少量生成7α-羟基-EpiA和7β-羟基-EpiA。这些相互转化过程中没有检测到假定的7-氧代-EpiA中间体。相反,7-氧代-EpiA底物能有效地还原为7α-羟基-EpiA和7β-羟基-EpiA,V(max)/K(M)比值分别为23.6和5.8。7α-羟基-EpiA和7β-羟基-EpiA分别对11β-HSD1介导的皮质醇氧化产生竞争性和混合型抑制作用。7-氧代-EpiA以竞争性方式抑制11β-HSD1介导的可的松还原反应。这些发现表明,人11β-HSD1的活性位点可能直接进行7-羟基化EpiA底物的差向异构化转化。人体中这些类固醇含量较低,不支持其在调节组织中糖皮质激素状态方面具有生理重要性。

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