首页> 外文期刊>Molecular and Cellular Endocrinology >Differential regulation of 11 beta-hydroxylase and aldosterone synthase in human adrenocortical H295R cells.
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Differential regulation of 11 beta-hydroxylase and aldosterone synthase in human adrenocortical H295R cells.

机译:人肾上腺皮质H295R细胞中11β-羟化酶和醛固酮合酶的差异调节。

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摘要

In humans the last steps in the synthesis of aldosterone and cortisol rely on the activity of two cytochrome P450 genes termed CYP11B2 (aldosterone synthase; P450aldo) and CYP11B1 (11 beta hydroxylase; P450cl1). The mechanisms which lead to differential expression of these two genes within the adrenal cortex are not well-defined. The human adrenocortical cell line. H295R, was utilized in this study to examine the intracellular second messenger pathways regulating expression of P450aldo and P450c11. using specific ribonuclease protection assays. Treatment of H295R cells with angiotensin II or potassium (K+) caused a time-dependent induction in the level of P450aldo transcripts. While K+ treatment was more specific for the induction of P450aldo mRNA, treatment with angiotensin II increased levels of both P450aldo and P450c11 transcripts. To define the second messenger systems which influence transcript levels for these enzymes, the effects of agonists of the protein kinase A, protein kinase C, and calcium pathways were tested on the expression of P450aldo and P450c11. Activation of the protein kinase A pathway by the agonists, dibutyryl cAMP or forskolin, preferentially increased the P450c11 transcript to a greater degree than P450aldo. Interestingly, activation of the protein kinase C pathway by tetradecanoylphorbol acetate (TPA) did not alter transcripts for either P450aldo or P450c11. The calcium channel agonist BAYK 8644 mimicked the effects of K+ by increasing the transcript for P450aldo. However, the calcium channel blocker nifedipine attenuated the stimulatory effects of angiotensin II and K+ on the levels of P450aldo. However, the calcium channel blocker nifedipine attenuated the stimulatory effects of angiotensin II and K+ on the levels of P450aldo transcripts without affecting the stimulatory effect of dbcAMP. This study demonstrates that the protein kinase A pathway preferentially induces P450c11 mRNA over that of P450aldo. In addition, pharmacologic agents that affect calcium levels provideevidence for an additional regulatory mechanism in modulating the expression of P450aldo. This is of importance since the major physiologic regulators of aldosterone secretion, angiotensin II and K+ are able to increase intracellular calcium but have little effect on intracellular cAMP levels.
机译:在人类中,醛固酮和皮质醇合成的最后步骤依赖于两个被称为CYP11B2(醛固酮合酶; P450aldo)和CYP11B1(11β羟化酶; P450cl1)的细胞色素P450基因的活性。导致这两个基因在肾上腺皮质中差异表达的机制尚不清楚。人肾上腺皮质细胞系。 H295R在本研究中用于检查调节P450aldo和P450c11表达的细胞内第二信使途径。使用特定的核糖核酸酶保护试验。用血管紧张素II或钾(K +)处理H295R细胞引起P450aldo转录本水平的时间依赖性诱导。尽管K +处理对P450aldo mRNA的诱导更具特异性,但血管紧张素II处理却增加了P450aldo和P450c11转录本的水平。为了定义影响这些酶的转录水平的第二信使系统,测试了蛋白激酶A,蛋白激酶C和钙途径的激动剂对P450aldo和P450c11表达的影响。激动剂二丁酰基cAMP或毛喉素对蛋白激酶A途径的激活优先使P450c11转录本的增加程度大于P450aldo。有趣的是,乙酸十四烷酰佛波酯(TPA)对蛋白激酶C通路的激活不会改变P450aldo或P450c11的转录本。钙通道激动剂BAYK 8644通过增加P450aldo的转录本来模仿K +的作用。但是,钙通道阻滞剂硝苯地平减弱了血管紧张素II和K +对P450aldo水平的刺激作用。但是,钙通道阻滞剂硝苯地平减弱了血管紧张素II和K +对P450aldo转录本水平的刺激作用,而没有影响dbcAMP的刺激作用。这项研究表明,蛋白激酶A途径比P450aldo优先诱导P450c11 mRNA。另外,影响钙水平的药理剂为调节P450aldo表达的其他调节机制提供了证据。这是重要的,因为醛固酮分泌的主要生理调节剂,血管紧张素II和K +能够增加细胞内钙,但对细胞内cAMP水平影响很小。

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