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人细胞色素P450 17A1的17α,20-裂解酶及新羟基化反应机制:18O标记和氧替代物证明高铁氧在其中的作用

Mechanism of 17α,20-Lyase and New Hydroxylation Reactions of Human Cytochrome P450 17A1: 18O LABELING AND OXYGEN SURROGATE EVIDENCE FOR A ROLE OF A PERFERRYL OXYGEN.

作者信息

Yoshimoto Francis K, Gonzalez Eric, Auchus Richard J, Guengerich F Peter

机构信息

From the Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146 and the Division of Metabolism, Diabetes and Endocrinology, Departments of Internal Medicine and Pharmacology, University of Michigan, Ann Arbor, Michigan 48019.

From the Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146 and.

出版信息

J Biol Chem. 2016 Aug 12;291(33):17143-64. doi: 10.1074/jbc.M116.732966. Epub 2016 Jun 23.

Abstract

Cytochrome P450 (P450) reactions can involve C-C bond cleavage, and several of these are critical in steroid and sterol biosynthesis. The mechanisms of P450s 11A1, 17A1, 19A1, and 51A1 have been controversial, in the context of the role of ferric peroxide (FeO2 (-)) versus perferryl (FeO(3+), compound I) chemistry. We reinvestigated the 17α-hydroxyprogesterone and 17α-hydroxypregnenolone 17α,20-lyase reactions of human P450 17A1 and found incorporation of one (18)O atom (from (18)O2) into acetic acid, consonant with proposals for a ferric peroxide mechanism (Akhtar, M., Lee-Robichaud, P., Akhtar, M. E., and Wright, J. N. (1997) J. Steroid Biochem. Mol. Biol. 61, 127-132; Akhtar, M., Wright, J. N., and Lee-Robichaud, P. (2011) J. Steroid Biochem. Mol. Biol. 125, 2-12). However, the reactions were supported by iodosylbenzene (a precursor of the FeO(3+) species) but not by H2O2 We propose three mechanisms that can involve the FeO(3+) entity and that explain the (18)O label in the acetic acid, two involving the intermediacy of an acetyl radical and one a steroid 17,20-dioxetane. P450 17A1 was found to perform 16-hydroxylation reactions on its 17α-hydroxylated products to yield 16,17α-dihydroxypregnenolone and progesterone, suggesting the presence of an active perferryloxo active species of P450 17A1 when its lyase substrate is bound. The 6β-hydroxylation of 16α,17α-dihydroxyprogesterone and the oxidation of both 16α,17α-dihydroxyprogesterone and 16α,17α-dihydroxypregnenolone to 16-hydroxy lyase products were also observed. We provide evidence for the contribution of a compound I mechanism, although contribution of a ferric peroxide pathway in the 17α,20-lyase reaction cannot be excluded.

摘要

细胞色素P450(P450)反应可涉及碳 - 碳键断裂,其中一些反应在类固醇和甾醇生物合成中至关重要。在过氧化铁(FeO₂⁻)与过氧亚铁(FeO³⁺,化合物I)化学作用的背景下,P450s 11A1、17A1、19A1和51A1的作用机制一直存在争议。我们重新研究了人P450 17A1的17α - 羟基孕酮和17α - 羟基孕烯醇酮17α,20 - 裂解酶反应,发现有一个(¹⁸)O原子(来自(¹⁸)O₂)掺入乙酸中,这与过氧化铁机制的提议一致(阿赫塔尔,M.,李 - 罗比乔德,P.,阿赫塔尔,M. E.,和赖特,J. N.(1997年)《类固醇生物化学与分子生物学杂志》61,127 - 132;阿赫塔尔,M.,赖特,J. N.,和李 - 罗比乔德,P.(2011年)《类固醇生物化学与分子生物学杂志》125,2 - 12)。然而,这些反应由亚碘酰苯(FeO³⁺物种的前体)支持,而不是由H₂O₂支持。我们提出了三种可能涉及FeO³⁺实体的机制,这些机制解释了乙酸中的(¹⁸)O标记,其中两种涉及乙酰基自由基的中间体,一种涉及类固醇17,20 - 二氧杂环丁烷。发现P450 17A1对其17α - 羟基化产物进行16 - 羟基化反应,生成16,17α - 二羟基孕烯醇酮和孕酮,这表明当P450 17A1的裂解酶底物结合时,存在一种活性过氧亚铁氧基活性物种。还观察到16α,17α - 二羟基孕酮的6β - 羟基化以及16α,17α - 二羟基孕酮和16α,17α - 二羟基孕烯醇酮氧化为16 - 羟基裂解酶产物。我们提供了化合物I机制起作用的证据,尽管不能排除过氧化铁途径在17α,20 - 裂解酶反应中的作用。

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