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人肾上腺皮质H295R细胞中17α-羟化酶和3β-羟类固醇脱氢酶表达的差异调控

Differential control of 17 alpha-hydroxylase and 3 beta-hydroxysteroid dehydrogenase expression in human adrenocortical H295R cells.

作者信息

Bird I M, Pasquarette M M, Rainey W E, Mason J I

机构信息

Cecil H. and Ida Green Center for Reproductive Biology Sciences, University of Texas Southwestern Medical Center, Dallas 75235, USA.

出版信息

J Clin Endocrinol Metab. 1996 Jun;81(6):2171-8. doi: 10.1210/jcem.81.6.8964847.

Abstract

Previous studies of human adrenocortical cells have given inconsistent findings concerning the effects of angiotensin II (AII) alone or in combination with activators of the protein kinase A-signaling pathway on expression of cholesterol side-chain cleavage cytochrome P450 (P450scc), 17 alpha-hydroxylase cytochrome P450 (P450c17), and 3 beta-hydroxysteroid dehydrogenase (3 beta-HSD), as well as the corresponding effects on adrenocortical cell steroid secretory products. We have used the human adrenocortical carcinoma H295R cell to evaluate further this question and determine the role of protein kinase C in each of these responses to AII. Treatment with AII alone (10 nmol/L, 48 h) resulted in a significant increase in cortisol production (1.8-fold), as well as a much greater effect on aldosterone production. This increased formation of 17 alpha-hydroxysteroids was accompanied by increased expression of P450c17 as determined at the level of messenger RNA (mRNA) and enzyme activity. Similar increases in expression of P450scc were observed at the level of mRNA. Increases in 3 beta-HSD expression were also seen at the level of mRNA and, to a lesser extent, at the level of enzyme activity. Because of the comparatively low basal 17 alpha-hydroxylase and high basal 3 beta-HSD activity of H295R cells, however, the overall effect of AII treatment was actually a rise in the 17 alpha-hydroxylase/3 beta-HSD activity ratio, resulting in increased formation of 17 alpha-hydroxysteroids such as cortisol. Whereas treatment with 12-O-tetradecanoylphorbol 13-acetate (TPA) reproduced the effect of AII on 3 beta-HSD expression, TPA failed to reproduce the effects of AII on P450c17 and P450scc and even resulted in a marked decrease in expression of P450c17. Thus, the stimulatory effect of AII alone on P450c17 expression was not mediated via protein kinase C but, like the action of K+, was probably mediated via the Ca(2+)-signaling pathway. Treatment with forskolin (10 mumol/L, 48 h) resulted in a dramatic increase in both cortisol and dehydroepiandrosterone production together with increases in expression of P450c17, P450scc, and 3 beta-HSD as measured at the level of mRNA and activity. Consistent with the increase in 17 alpha-hydroxysteroid formation, the effect on 17 alpha-hydroxylase expression was greater than that on 3 beta-HSD at the level of enzyme activity, so a larger 17 alpha-hydroxylase/3 beta-HSD activity ratio was achieved. Cotreatment with forskolin and AII, however, resulted in a dose-dependent reduction in cortisol and DHEA production concomitant with a marked attenuation of P450scc and P450c17 expression. Although forskolin-induced expression of 3 beta-HSD was not further increased at the level of mRNA by cotreatment with AII, additivity was observed at the level of changes in enzyme activity. Thus, AII cotreatment resulted in a marked reduction of the forskolin-induced increase in 17 alpha-hydroxylase/3 beta-HSD activity ratio, and so, 17 alpha-hydroxysteroid synthesis was attenuated. These effects of AII cotreatment on expression of P450c17 and P450scc were reproduced by cotreatment with TPA (10 nmol/L), suggesting the involvement of protein kinase C in these attenuative responses. Furthermore, the effect of AII cotreatment on changes in forskolin-induced 17 alpha-hydroxylase and 3 beta-HSD activities were blocked by the AII Type 1 (AT1) receptor antagonist DuP753 (Losartan), confirming the involvement of an AT1 receptor-linked phospholipase C in activating protein kinase C.

摘要

以往关于人肾上腺皮质细胞的研究,对于单独使用血管紧张素II(AII)或与蛋白激酶A信号通路激活剂联合使用时,对胆固醇侧链裂解细胞色素P450(P450scc)、17α-羟化酶细胞色素P450(P450c17)和3β-羟类固醇脱氢酶(3β-HSD)表达的影响,以及对肾上腺皮质细胞类固醇分泌产物的相应影响,结果并不一致。我们利用人肾上腺皮质癌H295R细胞进一步评估了这个问题,并确定了蛋白激酶C在对AII的这些反应中的作用。单独用AII(10 nmol/L,48小时)处理导致皮质醇生成显著增加(1.8倍),对醛固酮生成的影响更大。17α-羟类固醇生成的增加伴随着P450c17在信使核糖核酸(mRNA)水平和酶活性水平上的表达增加。在mRNA水平上也观察到P450scc表达有类似增加。在mRNA水平以及较小程度上在酶活性水平上也观察到3β-HSD表达增加。然而,由于H295R细胞的基础17α-羟化酶相对较低而基础3β-HSD活性较高,AII处理的总体效果实际上是17α-羟化酶/3β-HSD活性比值升高,导致皮质醇等17α-羟类固醇生成增加。虽然用12-O-十四酰佛波醇-13-乙酸酯(TPA)处理重现了AII对3β-HSD表达的影响,但TPA未能重现AII对P450c17和P450scc的影响,甚至导致P450c17表达显著下降。因此,单独AII对P450c17表达的刺激作用不是通过蛋白激酶C介导的,而是像K+的作用一样,可能是通过Ca(2+)信号通路介导的。用福司可林(10 μmol/L,48小时)处理导致皮质醇和脱氢表雄酮生成显著增加,同时P450c17、P450scc和3β-HSD在mRNA水平和活性水平上的表达增加。与17α-羟类固醇生成增加一致,在酶活性水平上对17α-羟化酶表达的影响大于对3β-HSD的影响,因此实现了更大的17α-羟化酶/3β-HSD活性比值。然而,福司可林与AII联合处理导致皮质醇和脱氢表雄酮生成呈剂量依赖性减少,同时P450scc和P450c17表达显著减弱。虽然联合用AII处理在mRNA水平上没有进一步增加福司可林诱导的3β-HSD表达,但在酶活性变化水平上观察到相加作用。因此,AII联合处理导致福司可林诱导的17α-羟化酶/3β-HSD活性比值增加显著降低,从而17α-羟类固醇合成减弱。AII联合处理对P450c17和P450scc表达的这些影响在用TPA(10 nmol/L)联合处理时重现,提示蛋白激酶C参与了这些减弱反应。此外,AII联合处理对福司可林诱导的17α-羟化酶和3β-HSD活性变化的影响被AII 1型(AT1)受体拮抗剂DuP753(氯沙坦)阻断,证实了AT1受体相关的磷脂酶C参与激活蛋白激酶C。

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