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Three-dimensional structure of steroid 21-hydroxylase (cytochrome P450 21A2) with two substrates reveals locations of disease-associated variants.甾体 21-羟化酶(细胞色素 P450 21A2)与两种底物的三维结构揭示了与疾病相关的变异体的位置。
J Biol Chem. 2012 Mar 23;287(13):10613-10622. doi: 10.1074/jbc.M111.323501. Epub 2012 Jan 18.
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Structural and mechanistic insights into the interaction of cytochrome P4503A4 with bromoergocryptine, a type I ligand.细胞色素 P4503A4 与溴隐亭(I 型配体)相互作用的结构和机制见解。
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Orphans in the human cytochrome P450 superfamily: approaches to discovering functions and relevance in pharmacology.人类细胞色素 P450 超家族中的孤儿酶:在药理学中发现功能和相关性的方法。
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Structural basis for androgen specificity and oestrogen synthesis in human aromatase.人类芳香化酶中雄激素特异性和雌激素合成的结构基础。
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Multiple steps determine the overall rate of the reduction of 5alpha-dihydrotestosterone catalyzed by human type 3 3alpha-hydroxysteroid dehydrogenase: implications for the elimination of androgens.多个步骤决定了人3型3α-羟基类固醇脱氢酶催化5α-二氢睾酮还原的总体速率:对雄激素消除的影响。
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10
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人细胞色素 P450 19A1 和 3A4 对二氢睾酮的氧化作用。

Oxidation of dihydrotestosterone by human cytochromes P450 19A1 and 3A4.

机构信息

Department of Biochemistry and Center in Molecular Toxicology, Vanderbilt University School of Medicine, Nashville, TN 37232-0146, USA.

出版信息

J Biol Chem. 2012 Aug 24;287(35):29554-67. doi: 10.1074/jbc.M112.390047. Epub 2012 Jul 7.

DOI:10.1074/jbc.M112.390047
PMID:22773874
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3436178/
Abstract

Dihydrotestosterone is a more potent androgen than testosterone and plays an important role in endocrine function. We demonstrated that, like testosterone, dihydrotestosterone can be oxidized by human cytochrome P450 (P450) 19A1, the steroid aromatase. The products identified include the 19-hydroxy- and 19-oxo derivatives and the resulting Δ(1,10)-, Δ(5,10)-, and Δ(9,10)-dehydro 19-norsteroid products (loss of 19-methyl group). The overall catalytic efficiency of oxidation was ~10-fold higher than reported for 3α-reduction by 3α-hydroxysteroid dehydrogenase, the major enzyme known to deactivate dihydrotestosterone. These and other studies demonstrate the flexibility of P450 19A1 in removing the 1- and 2-hydrogens from 19-norsteroids, the 2-hydrogen from estrone, and (in this case) the 1-, 5β-, and 9β-hydrogens of dihydrotestosterone. Incubation of dihydrotestosterone with human liver microsomes and NADPH yielded the 18- and 19-hydroxy products plus the Δ(1,10)-dehydro 19-nor product identified in the P450 19A1 reaction. The 18- and 19-hydroxylation reactions were attributed to P450 3A4, and 18- and 19-hydroxydihydrotestosterone were identified in human plasma and urine samples. The change in the pucker of the A ring caused by reduction of the Δ(4,5) bond is remarkable in shifting the course of hydroxylation from the 6β-, 2β-, 1β-, and 15β-methylene carbons (testosterone) to the axial methyl groups (18, 19) in dihydrotestosterone and demonstrates the sensitivity of P450 3A4, even with its large active site, to small changes in substrate structure.

摘要

双氢睾酮比睾酮具有更强的雄激素作用,并在内分泌功能中发挥重要作用。我们证明,与睾酮一样,双氢睾酮可以被人细胞色素 P450(P450)19A1(类固醇芳香酶)氧化。鉴定的产物包括 19-羟基-和 19-酮衍生物,以及由此产生的 Δ(1,10)-、Δ(5,10)-和 Δ(9,10)-去氢 19-降甾体产物(失去 19-甲基)。氧化的总催化效率比已知使双氢睾酮失活的主要酶 3α-羟甾酮脱氢酶报道的 3α-还原高约 10 倍。这些和其他研究表明,P450 19A1 具有从 19-降甾体中去除 1-和 2-氢、从雌酮中去除 2-氢以及(在这种情况下)从双氢睾酮中去除 1-、5β-和 9β-氢的灵活性。将双氢睾酮与人类肝微粒体和 NADPH 一起孵育,产生在 P450 19A1 反应中鉴定的 18-和 19-羟基产物以及 Δ(1,10)-去氢 19-降产物。18-和 19-羟化反应归因于 P450 3A4,并且在人血浆和尿液样本中鉴定了 18-和 19-羟双氢睾酮。由于 Δ(4,5)键的还原而导致的 A 环的构象变化,从睾酮的 6β-、2β-、1β-和 15β-亚甲基碳转移到双氢睾酮的轴向甲基(18、19),这一变化显著改变了羟化途径,表明 P450 3A4 即使其活性部位较大,对底物结构的微小变化也很敏感。