Kolanowski J, Ortega N, Crabbé J
Department of Physiology, University of Louvain (UCL), Medical School, Brussels, Belgium.
J Steroid Biochem. 1988 Feb;29(2):249-55. doi: 10.1016/0022-4731(88)90273-7.
In an attempt to delineate the effect of corticotropin (ACTH) on post-pregnenolone steroidogenesis, the activity of enzymatic systems operative in conversion of pregnenolone into glucocorticoids and androgens was studied in adrenocortical cells from control rabbits and from animals treated with ACTH for 12 days (ACTH 1-24, 200 micrograms s.c. daily). The cells from ACTH-treated rabbits exhibited an increased overall steroidogenic capacity and produced much more cortisol (P less than 0.0005) as well as other 17-hydroxylated steroids as a result of increased activity of 17 alpha-hydroxylase; corticosterone generation was concomitantly reduced. The increased conversion of pregnenolone or progesterone into androgens, as a result of previous treatment with ACTH, provides additional evidence for an effect of ACTH on 17 alpha-hydroxylase activity. A stimulatory effect of ACTH on 11 beta-hydroxylase was also evidenced by these cells, since conversion of 11-deoxycortisol into cortisol was enhanced (P less than 0.005). The increased production of androgens from 17-hydroxylated precursors by cells from ACTH-treated rabbits suggests that ACTH also exerts a prolonged stimulatory effect on 17,20-lyase. The activity of 3 beta-hydroxysteroid dehydrogenase-isomerase was apparently not influenced by chronic treatment with ACTH, judged from unchanged conversion of dehydroepiandrosterone into androstenedione. The activity of 11 beta-dehydrogenase was likewise unchanged in these conditions.
为了阐明促肾上腺皮质激素(ACTH)对孕烯醇酮后甾体激素生成的影响,我们研究了正常家兔以及接受ACTH治疗12天(ACTH 1 - 24,每日皮下注射200微克)的家兔肾上腺皮质细胞中,将孕烯醇酮转化为糖皮质激素和雄激素的酶系统活性。接受ACTH治疗的家兔的细胞表现出整体甾体激素生成能力增强,由于17α-羟化酶活性增加,皮质醇生成量显著增加(P < 0.0005),同时还生成了更多其他17-羟化甾体激素;与此同时,皮质酮生成减少。由于之前用ACTH进行了治疗,孕烯醇酮或孕酮向雄激素的转化增加,这为ACTH对17α-羟化酶活性的影响提供了额外证据。这些细胞还证明了ACTH对11β-羟化酶有刺激作用,因为11-脱氧皮质醇向皮质醇的转化增强了(P < 0.005)。接受ACTH治疗的家兔的细胞从17-羟化前体生成雄激素的量增加,这表明ACTH对17,20-裂解酶也有长期刺激作用。从脱氢表雄酮向雄烯二酮的转化未变判断,ACTH的长期治疗显然未影响3β-羟类固醇脱氢酶-异构酶的活性。在这些条件下,11β-脱氢酶的活性同样未发生变化。