Biotech Center, SEBS, Rutgers University, New Brunswick, NJ, USA.
J Cell Physiol. 2013 May;228(5):1120-6. doi: 10.1002/jcp.24262.
A group of bioactive steroidal glycosides (pregnanes) with anorectic activity in animals was isolated from several genera of milkweeds including Hoodia and Asclepias. In this study, we investigated the effects, structure-activity relationships, and mechanism of action of pregnane glycosides on steroidogenesis in human adrenocortical H295R cells. Administration of pregnane glycosides for 24 h suppressed the basal and forskolin-stimulated release of androstenedione, corticosterone, and cortisone from H295R cells. The conversion of progesterone to 11-deoxycorticosterone and 17-hydroxyprogesterone to either androstenedione or 11-deoxycortisol was most strongly affected, with 12-cinnamoyl-, benzoyl-, and tigloyl-containing pregnanes showing the highest activity. Incubation of pregnane glycosides for 24 h had no effect on mRNA transcripts of CYP11A1, CYP21A1, CYP11B1 cytochrome enzymes and steroidogenic acute regulatory protein (StaR) protein, yet resulted in twofold decrease in HSD3B1 mRNA levels. At the same time, pregnane glycosides had no effect on the CYP1, 2, or 3 drug and steroid metabolism enzymes and showed weak Na(+) /K(+) ATPase and glucocorticoid receptor binding. Taken together, these data suggest that pregnane glycosides specifically suppress steroidogenesis through strong inhibition of 11β-hydroxylase and steroid 17-alpha-monooxygenase, and weak inhibition of cytochrome P450 side chain cleavage enzyme and 21β-hydroxylase, but not 3β-hydroxysteroid dehydrogenase/isomerase.
从几种乳草属植物(包括霍多尼亚和 Asclepias)中分离出了一组具有动物厌食活性的生物活性甾体糖苷(孕烷)。在这项研究中,我们研究了孕烷糖苷对人肾上腺皮质 H295R 细胞中甾体生成的作用、构效关系和作用机制。孕烷糖苷给药 24 小时可抑制 H295R 细胞中基础和福司可林刺激的雄烯二酮、皮质酮和可的松的释放。孕酮转化为 11-脱氧皮质酮和 17-羟孕酮为雄烯二酮或 11-脱氧皮质醇的转化率受影响最大,含有 12-肉桂酰基、苯甲酰基和tigloyl 的孕烷显示出最高的活性。孕烷糖苷孵育 24 小时对 CYP11A1、CYP21A1、CYP11B1 细胞色素酶和甾体生成急性调节蛋白(StaR)蛋白的 mRNA 转录物没有影响,但导致 HSD3B1 mRNA 水平降低两倍。同时,孕烷糖苷对 CYP1、2 或 3 药物和甾体代谢酶没有影响,并且显示出较弱的 Na(+) / K(+) ATPase 和糖皮质激素受体结合。总之,这些数据表明,孕烷糖苷通过强烈抑制 11β-羟化酶和甾体 17-α-单加氧酶,以及弱抑制细胞色素 P450 侧链裂解酶和 21β-羟化酶,特异性抑制甾体生成,但不抑制 3β-羟甾体脱氢酶/异构酶。