Hanley N A, Rainey W E, Wilson D I, Ball S G, Parker K L
Department of Internal Medicine & Pharmacology, University of Texas Southwestern Medical Center Dallas, Texas 75390-8857, USA.
Mol Endocrinol. 2001 Jan;15(1):57-68. doi: 10.1210/mend.15.1.0585.
Cytochrome P450 17alpha-hydroxylase/17-20 lyase (P450(C17)) is a critical branchpoint enzyme for steroid hormone biosynthesis. During human gestation, P450(C17) is required for the production of dehydroepiandrostenedione sulfate by the fetal adrenal cortex and for testicular production of androgens that mediate male sexual differentiation. In this study, we investigate the regulation of the human CYP17 gene by two orphan nuclear receptors, steroidogenic factor 1 (SF-1) and DAX1. In human embryos, SF-1 and DAX1 are expressed throughout the developing adrenal cortex from its inception at 33 days post conception (dpc). In contrast, P450(C17) expression, which commences between 41 and 44 dpc, is limited to the fetal zone. The 5'-flanking region of the human CYP17 gene contains three functional SF-1 elements that collectively mediate a > or =25-fold induction of promoter activity by SF-1. In constructs containing all three functional SF-1 elements, DAX1 inhibited this activation by > or =55%. In the presence of only one or two SF-1 elements, DAX1 inhibition was lost even though SF-1 transactivation persisted. These data suggest that efficient repression of SF-1-mediated activation of the human CYP17 gene by DAX1 requires multiple SF-1 elements. Opposing effects of SF-1 and DAX1 may fine tune the differential responses of various SF-1 target genes in different endocrine tissues.
细胞色素P450 17α-羟化酶/17-20裂解酶(P450(C17))是类固醇激素生物合成的关键分支点酶。在人类妊娠期间,胎儿肾上腺皮质产生硫酸脱氢表雄酮以及睾丸产生介导男性性分化的雄激素都需要P450(C17)。在本研究中,我们调查了两种孤儿核受体,即类固醇生成因子1(SF-1)和DAX1对人CYP17基因的调控。在人类胚胎中,从受孕后33天(dpc)肾上腺皮质开始发育起,SF-1和DAX1就在整个发育中的肾上腺皮质中表达。相比之下,P450(C17)的表达在41至44 dpc之间开始,仅限于胎儿带。人CYP17基因的5'侧翼区域包含三个功能性SF-1元件,它们共同介导SF-1对启动子活性的≥25倍诱导。在包含所有三个功能性SF-1元件的构建体中,DAX1将这种激活抑制了≥55%。在仅存在一个或两个SF-1元件的情况下,即使SF-1的反式激活持续存在,DAX1的抑制作用也会丧失。这些数据表明,DAX1对SF-1介导的人CYP17基因激活的有效抑制需要多个SF-1元件。SF-1和DAX1的相反作用可能会微调不同内分泌组织中各种SF-1靶基因的差异反应。