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孕酮16α-羟化酶活性由人细胞色素P450 17α-羟化酶催化。

Progesterone 16 alpha-hydroxylase activity is catalyzed by human cytochrome P450 17 alpha-hydroxylase.

作者信息

Swart P, Swart A C, Waterman M R, Estabrook R W, Mason J I

机构信息

Cecil H. and Ida Green Center for Reproductive Biology Sciences, Departments of Biochemistry and Obstetrics and Gynecology, University of Texas Southwestern Medical Center, Dallas 75235.

出版信息

J Clin Endocrinol Metab. 1993 Jul;77(1):98-102. doi: 10.1210/jcem.77.1.8325965.

Abstract

Progesterone and pregnenolone are metabolized to 17 alpha-hydroxysteroids by a cytochrome P450-dependent 17 alpha-hydroxylase (P450c17). The same enzyme can also catalyze the removal of the side-chain of these 17 alpha-hydroxylated steroids to yield androstenedione and dehydroepiandrosterone, respectively. We investigated the metabolism of progesterone by monkey kidney tumor (COS 1) cells transfected with a plasmid vector containing the cDNA encoding the complete amino acid sequence for human cytochrome P450c17. Transfected COS 1 cells converted progesterone to 17 alpha-hydroxyprogesterone as well as 16 alpha-hydroxyprogesterone, but no detectable androstenedione was produced. However, pregnenolone was converted to 17 alpha-hydroxypregnenolone and, ultimately, dehydroepiandrosterone. No 16 alpha-hydroxypregnenolone was produced. The kinetics of progesterone metabolism by the enzyme expressed in COS 1 cells indicated that both 17 alpha- and 16 alpha-hydroxylated products were products were produced from a common active site. Microsomes prepared from fetal adrenal and adult testis converted progesterone to 17 alpha-hydroxyprogesterone as well as 16 alpha-hydroxyprogesterone. No detectable androstenedione was produced by these preparations. Antibodies raised against porcine cytochrome P450c17 inhibited the 17 alpha- and 16 alpha-hydroxylation of progesterone to the same extent when using fetal adrenal microsomes, whereas no inhibition of 21-hydroxylation of progesterone was observed. Similar results were obtained with the imidazole antimycotic agent ketoconazole, which is a preferential cytochrome P450c17 inhibitor. From these results we conclude that human cytochrome P450c17 exhibits marked progesterone 16 alpha-hydroxylase activity in addition to its 17 alpha-hydroxylase function when expressed not only in a heterologous cell expression system but also, importantly, in human steroidogenic cells. Furthermore, the human enzyme has extremely low C-17,20-lyase activity toward progesterone, 17 alpha-hydroxyprogesterone, and 16 alpha-hydroxyprogesterone and fails to convert these to corresponding C19 steroids.

摘要

孕酮和孕烯醇酮通过细胞色素P450依赖性17α-羟化酶(P450c17)代谢为17α-羟基类固醇。同一酶还可催化这些17α-羟基化类固醇的侧链去除,分别生成雄烯二酮和脱氢表雄酮。我们研究了用含有编码人细胞色素P450c17完整氨基酸序列cDNA的质粒载体转染的猴肾肿瘤(COS 1)细胞对孕酮的代谢。转染的COS 1细胞将孕酮转化为17α-羟孕酮以及16α-羟孕酮,但未检测到雄烯二酮生成。然而,孕烯醇酮被转化为17α-羟基孕烯醇酮,并最终转化为脱氢表雄酮。未生成16α-羟基孕烯醇酮。COS 1细胞中表达的该酶对孕酮代谢的动力学表明,17α-和16α-羟基化产物均由一个共同的活性位点产生。从胎儿肾上腺和成人睾丸制备的微粒体将孕酮转化为17α-羟孕酮以及16α-羟孕酮。这些制剂未检测到雄烯二酮生成。当使用胎儿肾上腺微粒体时,针对猪细胞色素P450c17产生的抗体对孕酮的17α-和16α-羟化的抑制程度相同,而未观察到对孕酮21-羟化的抑制。用咪唑抗真菌剂酮康唑也得到了类似结果,酮康唑是一种选择性细胞色素P450c17抑制剂。从这些结果我们得出结论,人细胞色素P450c17不仅在异源细胞表达系统中表达时,而且重要的是在人类固醇生成细胞中表达时,除了其17α-羟化酶功能外,还表现出显著的孕酮16α-羟化酶活性。此外,人酶对孕酮、17α-羟孕酮和16α-羟孕酮的C-17,20-裂解酶活性极低,无法将它们转化为相应的C19类固醇。

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