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Inherent steroid 17α20-lyase activity in defunct cytochrome P450 17A enzymes

机译:失效的细胞色素P450 17A酶的固有类固醇17α20-裂合酶活性

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摘要

Cytochrome P450 (P450) 17A1 catalyzes the oxidations of progesterone and pregnenolone and is the major source of androgens. The enzyme catalyzes both 17α-hydroxylation and a subsequent 17α,20-lyase reaction, and several mechanisms have been proposed for the latter step. Zebrafish P450 17A2 catalyzes only the 17α-hydroxylations. We previously reported high similarity of the crystal structures of zebrafish P450 17A1 and 17A2 and human P450 17A1. Five residues near the heme, which differed, were changed. We also crystallized this five-residue zebrafish P450 17A1 mutant, and the active site still resembled the structure in the other proteins, with some important differences. These P450 17A1 and 17A2 mutants had catalytic profiles more similar to each other than did the wildtype proteins. Docking with these structures can explain several minor products, which require multiple enzyme conformations. The 17α-hydroperoxy (OOH) derivatives of the steroids were used as oxygen surrogates. Human P450 17A1 and zebrafish P450s 17A1 and P450 17A2 readily converted these to the lyase products in the absence of other proteins or cofactors (with catalytically competent kinetics) plus hydroxylated 17α-hydroxysteroids. The 17α-OOH results indicate that a “Compound I” (FeO3+) intermediate is capable of formation and can be used to rationalize the products. We conclude that zebrafish P450 17A2 is capable of lyase activity with the 17α-OOH steroids because it can achieve an appropriate conformation for lyase catalysis in this system that is precluded in the conventional reaction.
机译:细胞色素P450(P450)17A1催化孕酮和孕烯醇酮的氧化,是雄激素的主要来源。该酶既催化17α-羟基化反应,又催化17α,20-裂合酶反应,已经为后一步骤提出了几种机理。斑马鱼P450 17A2仅催化17α-羟基化。我们先前报道了斑马鱼P450 17A1和17A2与人类P450 17A1的晶体结构具有高度相似性。在血红素附近的五个残基有所不同。我们还结晶了这五个残基的斑马鱼P450 17A1突变体,其活性位点仍然类似于其他蛋白质的结构,但有一些重要区别。这些P450 17A1和17A2突变体比野生型蛋白具有更相似的催化特性。与这些结构对接可以解释几种次要产物,这些产物需要多种酶构象。类固醇的17α-氢过氧(OOH)衍生物用作替代氧。人P450 17A1和斑马鱼P450 17A1和P450 17A2在没有其他蛋白质或辅因子(具有催化活性的动力学)以及羟基化17α-羟基类固醇的情况下,很容易将它们转化为裂解酶产物。 17α-OOH结果表明,“化合物I”(FeO 3 + )中间体具有形成能力,可用于合理化产品。我们得出的结论是,斑马鱼P450 17A2能够与17α-OOH类固醇发生裂解酶活性,因为它可以在常规反应中排除该系统中裂解酶催化的适当构象。

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