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首页> 外文期刊>Biochemistry >Structure of Bacterial 3beta/17beta-Hydroxysteroid Dehyrogenase at 1.2 A Resolution: A Model for Multiple Steroid Recognition
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Structure of Bacterial 3beta/17beta-Hydroxysteroid Dehyrogenase at 1.2 A Resolution: A Model for Multiple Steroid Recognition

机译:细菌3beta / 17beta-羟基类固醇脱氢酶在1.2 A分辨率下的结构:多种类固醇识别的模型。

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摘要

The enzyme 3beta/17beta-hydroxysteroid dehydrogenase (3beta/17beta-HSD) is a steroid-inducible component of the Gram-negative bacterium Comamonas testosteroni. It catalyzes the reversible reduction/dehydrogenation of the oxo/beta-hydroxy groups at positions 3 and 17 of steroid compounds, including hormones and isobile acids. Crystallographic analysis at 1.2 A resolution reveals the enzyme to have nearly identical subunits that form a tetramer with 222 symmetry. This is one of the largest oligomeric structures refined at this resolution. The subunit consists of a monomer with a single-domain structure built around a seven-stranded beta-sheet flanked by six alpha-helices. The active site contains a Ser-Tyr-Lys triad, typical for short-chain dehydrogenases/reductases (SDR). Despite their highly diverse substrate specificities, SDR members show a close to identical folding pattern architectures and a common catalytic mechanism. In contrast to other SDS apostructures determined, the substrate binding loop is well-defined. Analysis of structure-activity relationships of catalytic cleft residues, docking analysis of substrates and inhibitors, and accessible surface analysis explains how 3beta/17beta-HSD accommodates steroid substrates of different conformations.
机译:酶3beta / 17beta-羟类固醇脱氢酶(3beta / 17beta-HSD)是革兰氏阴性细菌Comamonas testosteroni的类固醇诱导成分。它催化类固醇化合物(包括激素和异丁酸)的3和17位上的羰基/β-羟基可逆还原/脱氢。 1.2 A分辨率的晶体学分析表明,该酶具有几乎相同的亚基,可形成具有222个对称性的四聚体。这是在该分辨率下得到改进的最大的寡聚结构之一。该亚基由具有单域结构的单体构成,该单体围绕着七个链的β-折叠,两侧是六个α-螺旋。活性位点包含一个Ser-Tyr-Lys三联体,通常用于短链脱氢酶/还原酶(SDR)。尽管SDR成员具有高度不同的底物特异性,但它们显示出接近相同的折叠模式结构和通用的催化机制。与确定的其他SDS孔隙结构相比,底物结合环是明确定义的。催化裂隙残基的结构活性关系分析,底物和抑制剂的对接分析以及可及的表面分析解释了3beta / 17beta-HSD如何容纳不同构象的类固醇底物。

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