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磷脂酶在体外调节未成熟猪睾丸雄激素和16-雄烯生物合成途径。

Phospholipases modulate immature pig testicular androgen and 16-androstene biosynthetic pathways in vitro.

作者信息

Cooke G M

机构信息

Department of d'Anatomie et Physiologie Animale, Faculté de Médecine Vétérinaire, Université de Montréal, Québec, Canada.

出版信息

J Steroid Biochem Mol Biol. 1992 Jan;41(1):99-107. doi: 10.1016/0960-0760(92)90230-g.

Abstract

The role of membrane phospholipids in porcine testicular androgen and 16-androstene biosynthesis was examined by monitoring the effects of phospholipase treatments on the activities of the steroid transforming enzymes. Untreated (control) microsomes from immature pig testes converted pregnenolone to 17-hydroxypregnenolone and DHA to 5,16-androstadien-3 beta-ol (andien-beta) and 4,16-androstadien-3-one (dienone) in the 16-androstene pathway, these metabolites accounting for most (65%) of the pregnenolone converted. The 4-ene steroids in the androgen pathway (progesterone, 17-hydroxyprogesterone, androstenedione and testosterone) totalled less than 10% of the pregnenolone metabolites. No estrogens or 5 alpha-reduced metabolites were detected. Treatment with phospholipase A2 or C, decreased the conversion of pregnenolone to 4-ene-3-oxo steroids but did not decrease the quantities of 5-ene-3 beta-hydroxysteroids. Confirmation of these findings was obtained by measuring the individual enzymatic steps. Phospholipases A2 and C significantly reduced the conversion of DHA to androstenedione and andien-beta to dienone but did not affect 17-hydroxylase or 'andien-beta-synthetase'. However, when the C-17, 20 lyase step was measured alone, phospholipase C decreased the quantity of androstenedione produced indicating that the side-chain cleavage reaction may involve a lipid component. The different effects of phospholipases on these enzymes suggests that pregnenolone metabolism may be regulated by alterations in the membrane microenvironment.

摘要

通过监测磷脂酶处理对类固醇转化酶活性的影响,研究了膜磷脂在猪睾丸雄激素和16-雄烯生物合成中的作用。来自未成熟猪睾丸的未处理(对照)微粒体将孕烯醇酮转化为17-羟孕烯醇酮,并将DHA转化为16-雄烯途径中的5,16-雄二烯-3β-醇(andien-β)和4,16-雄二烯-3-酮(dienone),这些代谢产物占转化的孕烯醇酮的大部分(65%)。雄激素途径中的4-烯类固醇(孕酮、17-羟孕酮、雄烯二酮和睾酮)总计不到孕烯醇酮代谢产物的10%。未检测到雌激素或5α-还原代谢产物。用磷脂酶A2或C处理可降低孕烯醇酮向4-烯-3-氧代类固醇的转化,但不降低5-烯-3β-羟基类固醇的量。通过测量各个酶促步骤证实了这些发现。磷脂酶A2和C显著降低了DHA向雄烯二酮以及andien-β向dienone的转化,但不影响17-羟化酶或“andien-β合成酶”。然而,当单独测量C-17,20裂解酶步骤时,磷脂酶C降低了产生的雄烯二酮的量,表明侧链裂解反应可能涉及脂质成分。磷脂酶对这些酶的不同作用表明,孕烯醇酮代谢可能受膜微环境变化的调节。

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