The 2nd Affiliated Hospital, Wenzhou Medical College, Wenzhou, Zhejiang 325000, China.
Molecules. 2011 Dec 2;16(12):9983-10001. doi: 10.3390/molecules16129983.
The Leydig cells of the testis have the capacity to biosynthesize testosterone from cholesterol. Testosterone and its metabolically activated product dihydrotestosterone are critical for the development of male reproductive system and spermatogenesis. At least four steroidogenic enzymes are involved in testosterone biosynthesis: Cholesterol side chain cleavage enzyme (CYP11A1) for the conversion of cholesterol into pregnenolone within the mitochondria, 3β-hydroxysteroid dehydrogenase (HSD3B), for the conversion of pregnenolone into progesterone, 17α-hydroxylase/17,20-lyase (CYP17A1) for the conversion of progesterone into androstenedione and 17β-hydroxysteroid dehydrogenase (HSD17B3) for the formation of testosterone from androstenedione. Testosterone is also metabolically activated into more potent androgen dihydrotestosterone by two isoforms 5α-reductase 1 (SRD5A1) and 2 (SRD5A2) in Leydig cells and peripheral tissues. Many endocrine disruptors act as antiandrogens via directly inhibiting one or more enzymes for testosterone biosynthesis and metabolic activation. These chemicals include industrial materials (perfluoroalkyl compounds, phthalates, bisphenol A and benzophenone) and pesticides/biocides (methoxychlor, organotins, 1,2-dibromo-3-chloropropane and prochloraz) and plant constituents (genistein and gossypol). This paper reviews these endocrine disruptors targeting steroidogenic enzymes.
睾丸间质细胞具有从胆固醇生物合成睾酮的能力。睾酮及其代谢激活产物二氢睾酮对于男性生殖系统和精子发生的发育至关重要。至少有四种甾体生成酶参与睾酮的生物合成:胆固醇侧链裂解酶(CYP11A1),用于在线粒体中将胆固醇转化为孕烯醇酮;3β-羟甾脱氢酶(HSD3B),用于将孕烯醇酮转化为孕酮;17α-羟化酶/17,20-裂合酶(CYP17A1),用于将孕酮转化为雄烯二酮;17β-羟甾脱氢酶(HSD17B3),用于将雄烯二酮转化为睾酮。睾酮也通过两种同工酶 5α-还原酶 1(SRD5A1)和 2(SRD5A2)在间质细胞和外周组织中代谢激活为更有效的雄激素二氢睾酮。许多内分泌干扰物通过直接抑制一种或多种用于睾酮生物合成和代谢激活的酶而起抗雄激素作用。这些化学物质包括工业材料(全氟烷基化合物、邻苯二甲酸酯、双酚 A 和苯并呋喃酮)和农药/生物杀灭剂(甲氧氯、有机锡、1,2-二溴-3-氯丙烷和百菌清)以及植物成分(染料木黄酮和棉酚)。本文综述了这些针对甾体生成酶的内分泌干扰物。