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His164 regulates accessibility to the active site in fungal 17β-hydroxysteroid dehydrogenase

机译:His164调节真菌17β-羟类固醇脱氢酶中活性位点的可及性

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17β-Hydroxysteroid dehydrogenase from the fungus Cochliobolus lunatus (17β-HSDcl) is an NADPH-dependent member of the short-chain dehydrogenase/reductase superfamily. To study the catalytic properties of this enzyme, we prepared several specific mutations of 17β-HSDcl (Tyr167Phe, His164Trp/Gly, Tyr212Ala). Wild-type 17β-HSDcl and the 17β-HSDcl mutants were evaluated by chromatographic, kinetic and thermodynamic means. The Tyr167Phe mutation resulted in a complete loss of enzyme activity, while substitution of His164 with Trp and Gly both resulted in higher specificity number (V/K) for the steroid substrates, which are mainly a consequence of easier accessibility of steroid substrates to the active-site hollow under optimized conditions. The Tyr212Ala mutant showed increased activity in the oxidative direction, which appears to be a consequence of increased NADPH dissociation. The kinetic characterizations and thermodynamic analyses also suggest that His164 and Tyr212 in 17β-HSDcl have a role in the opening and closing of the active site of this enzyme and in the discrimination between oxidized and reduced coenzyme.
机译:来自真菌Cochliobolus lunatus的17β-羟基类固醇脱氢酶(17β-HSDcl)是短链脱氢酶/还原酶超家族的NADPH依赖性成员。为了研究该酶的催化特性,我们制备了17β-HSDcl的几个特定突变(Tyr167Phe,His164Trp / Gly,Tyr212Ala)。通过色谱,动力学和热力学手段评估了野生型17β-HSDcl和17β-HSDcl突变体。 Tyr167Phe突变导致酶活性完全丧失,而用Trp和Gly取代His164均导致类固醇底物具有更高的特异性值(V / K),这主要是由于类固醇底物更容易与活性物质接触优化条件下的现场空心。 Tyr212Ala突变体显示在氧化方向上的活性增加,这似乎是NADPH解离增加的结果。动力学表征和热力学分析还表明17β-HSDcl中的His164和Tyr212在该酶的活性位点的打开和关闭以及氧化和还原的辅酶的区分中起作用。

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