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醛固酮受体对 心脏替代启动子的特异性激活。

Specific Activation of the Alternative Cardiac Promoter of by the Mineralocorticoid Receptor.

机构信息

From the Signalisation et Physiopathologie Cardiovasculaire - UMR-S 1180, (T.R.M., G.A., D.F., G.R.-H., J.S., F.L., P.L., S.G., E.M., A.M.G., J.-P.B.), EA 4043 UBaPS (H.K.), and UMS-IPSIT, MIPSIT_Microscopy Facility (V.N.), Univ. Paris-Sud, INSERM, Université Paris-Saclay, 92296, Châtenay-Malabry, France; Department of Physiology, Federal University of Sergipe, Brazil (T.R.M., S.L.S.); Departamento de Bioquímica, Centro de Investigación y de Estudios Avanzados del IPN, México City, D.F., México (R.S.-E., A.R.); Signalisation Hormonale, Physopathologie Endocrinienne et Métabolique - UMR-S 1185, Univ. Paris-Sud, INSERM, Université Paris-Saclay, 94276, Le Kremlin-Bicêtre, France (S.V., M.L.); and Cardiovascular Translational Research, Navarrabiomed (Miguel Servet Foundation), Instituto de Investigación Sanitaria de Navarra (IdiSNA), Pamplona, Spain (A.F.-C., N.L.-A.).

出版信息

Circ Res. 2018 Mar 30;122(7):e49-e61. doi: 10.1161/CIRCRESAHA.117.312451. Epub 2018 Feb 21.

Abstract

RATIONALE

The MR (mineralocorticoid receptor) antagonists belong to the current therapeutic armamentarium for the management of cardiovascular diseases, but the mechanisms conferring their beneficial effects are poorly understood. Part of the cardiovascular effects of MR is because of the regulation of L-type Ca1.2 Ca channel expression, which is generated by tissue-specific alternative promoters as a long cardiac or short vascular N-terminal transcripts.

OBJECTIVE

To analyze the molecular mechanisms by which aldosterone, through MR, modulates Ca1.2 expression and function in a tissue-specific manner.

METHODS AND RESULTS

In primary cultures of neonatal rat ventricular myocytes, aldosterone exposure for 24 hours increased in a concentration-dependent manner long cardiac Ca1.2 N-terminal transcripts expression at both mRNA and protein levels, correlating with enhanced concentration-, time-, and MR-dependent P1-promoter activity. In silico analysis and mutagenesis identified MR interaction with both specific activating and repressing DNA-binding elements on the P1-promoter. The relevance of this regulation is confirmed both ex and in vivo in transgenic mice harboring the luciferase reporter gene under the control of the cardiac P1-promoter. Moreover, we show that this -regulatory mechanism is not limited to the heart. Indeed, in smooth muscle cells from different vascular beds, in which the short vascular Cav1.2 N-terminal transcripts is normally the major isoform, we found that MR signaling activates long cardiac Ca1.2 N-terminal transcripts expression through P1-promoter activation, leading to vascular contractile dysfunction. These results were further corroborated in hypertensive aldosterone/salt rodent models, showing notably a positive correlation between blood pressure and cardiac P1-promoter activity in aorta. This new vascular long cardiac Ca1.2 N-terminal transcripts molecular signature reduced sensitivity to the Ca channel blocker, nifedipine, in aldosterone-treated vessels.

CONCLUSIONS

Our results reveal that MR acts as a transcription factor to translate aldosterone signal into specific cardiac P1-promoter activation that might influence the therapeutic outcome of cardiovascular diseases.

摘要

背景

盐皮质激素受体(MR)拮抗剂属于心血管疾病治疗的现有手段,但对其有益作用的机制知之甚少。MR 的部分心血管作用是由于 L 型 Ca1.2 Ca 通道表达的调节,这是通过组织特异性替代启动子作为长心脏或短血管 N 端转录物产生的。

目的

分析醛固酮通过 MR 以组织特异性方式调节 Ca1.2 表达和功能的分子机制。

方法和结果

在新生大鼠心室肌细胞的原代培养中,醛固酮暴露 24 小时以浓度依赖性方式增加长心脏 Ca1.2 N 端转录物的表达,无论是在 mRNA 还是蛋白水平,均与增强的浓度、时间和 MR 依赖性 P1 启动子活性相关。计算机分析和突变分析确定了 MR 与 P1 启动子上的特定激活和抑制性 DNA 结合元件相互作用。这种调节的相关性在携带荧光素酶报告基因受心脏 P1 启动子控制的转基因小鼠中既在 ex 又在体内得到了证实。此外,我们表明这种调节机制不仅限于心脏。事实上,在来自不同血管床的平滑肌细胞中,短血管 Cav1.2 N 端转录物通常是主要同工型,我们发现 MR 信号通过 P1 启动子激活来激活长心脏 Ca1.2 N 端转录物的表达,导致血管收缩功能障碍。在高血压醛固酮/盐的啮齿动物模型中进一步证实了这些结果,显示主动脉中的血压与 P1 启动子活性之间存在正相关。这种新的血管长心脏 Ca1.2 N 端转录物分子特征降低了在醛固酮处理的血管中对 Ca 通道阻滞剂硝苯地平的敏感性。

结论

我们的结果表明,MR 作为一种转录因子作用,将醛固酮信号转化为特定的 P1 启动子激活,这可能影响心血管疾病的治疗效果。

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