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17β-羟基类固醇脱氢酶中NADP⁺的异常电荷稳定作用。

Unusual charge stabilization of NADP+ in 17beta-hydroxysteroid dehydrogenase.

作者信息

Mazza C, Breton R, Housset D, Fontecilla-Camps J C

机构信息

Laboratoire de Cristallographie et Cristallogenèse des Protéines, Institut de Biologie Structurale J.-P. Ebel, CEA-CNRS, 41, avenue des Martyrs, F-38027 Grenoble cedex, France.

出版信息

J Biol Chem. 1998 Apr 3;273(14):8145-52. doi: 10.1074/jbc.273.14.8145.

Abstract

Type 1 17beta-hydroxysteroid dehydrogenase (17beta-HSD1), a member of the short chain dehydrogenase reductase (SDR) family, is responsible for the synthesis of 17beta-estradiol, the biologically active estrogen involved in the genesis and development of human breast cancers. Here, we report the crystal structures of the H221L 17beta-HSD1 mutant complexed to NADP+ and estradiol and the H221L mutant/NAD+ and a H221Q mutant/estradiol complexes. These structures provide a complete picture of the NADP+-enzyme interactions involving the flexible 191-199 loop (well ordered in the H221L mutant) and suggest that the hydrophobic residues Phe192-Met193 could facilitate hydride transfer. 17beta-HSD1 appears to be unique among the members of the SDR protein family in that one of the two basic residues involved in the charge compensation of the 2'-phosphate does not belong to the Rossmann-fold motif. The remarkable stabilization of the NADP+ 2'-phosphate by the enzyme also clearly establishes its preference for this cofactor relative to NAD+. Analysis of the catalytic properties of, and estradiol binding to, the two mutants suggests that the His221-steroid O3 hydrogen bond plays an important role in substrate specificity.

摘要

1型17β-羟基类固醇脱氢酶(17β-HSD1)是短链脱氢酶还原酶(SDR)家族的成员之一,负责合成17β-雌二醇,这是一种参与人类乳腺癌发生和发展的具有生物活性的雌激素。在此,我们报告了与NADP⁺和雌二醇复合的H221L 17β-HSD1突变体以及H221L突变体/NAD⁺和H221Q突变体/雌二醇复合物的晶体结构。这些结构提供了涉及柔性191 - 199环(在H221L突变体中有序排列)的NADP⁺-酶相互作用的完整图景,并表明疏水残基Phe192 - Met193可能促进氢化物转移。17β-HSD1在SDR蛋白家族成员中似乎是独特的,因为参与2'-磷酸电荷补偿的两个碱性残基之一不属于Rossmann折叠基序。该酶对NADP⁺ 2'-磷酸的显著稳定作用也清楚地表明其相对于NAD⁺对该辅因子的偏好。对这两个突变体的催化特性和雌二醇结合的分析表明,His221-类固醇O3氢键在底物特异性中起重要作用。

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