The mineralocorticoid receptor: insights into its molecular and (patho)physiological biology.

Say Viengchareun, Damien Le Menuet, Laetitia Martinerie, Mathilde Munier, Laurent Pascual-Le Tallec, Marc Lombès
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引用次数: 236

Abstract

The last decade has witnessed tremendous progress in the understanding of the mineralocorticoid receptor (MR), its molecular mechanism of action, and its implications for physiology and pathophysiology. After the initial cloning of MR, and identification of its gene structure and promoters, it now appears as a major actor in protein-protein interaction networks. The role of transcriptional coregulators and the determinants of mineralocorticoid selectivity have been elucidated. Targeted oncogenesis and transgenic mouse models have identified unexpected sites of MR expression and novel roles for MR in non-epithelial tissues. These experimental approaches have contributed to the generation of new cell lines for the characterization of aldosterone signaling pathways, and have also facilitated a better understanding of MR physiology in the heart, vasculature, brain and adipose tissues. This review describes the structure, molecular mechanism of action and transcriptional regulation mediated by MR, emphasizing the most recent developments at the cellular and molecular level. Finally, through insights obtained from mouse models and human disease, its role in physiology and pathophysiology will be reviewed. Future investigations of MR biology should lead to new therapeutic strategies, modulating cell-specific actions in the management of cardiovascular disease, neuroprotection, mineralocorticoid resistance, and metabolic disorders.

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矿物皮质激素受体:对其分子和(病理)生理生物学的见解。
在过去的十年中,人们对矿物皮质激素受体(MR)及其作用的分子机制及其在生理学和病理生理学方面的意义的理解取得了巨大进展。在最初克隆MR,并鉴定其基因结构和启动子后,它现在作为蛋白质-蛋白质相互作用网络的主要参与者出现。转录共调节因子的作用和矿物皮质激素选择性的决定因素已经阐明。靶向肿瘤发生和转基因小鼠模型已经确定了MR在非上皮组织中的意外表达位点和新作用。这些实验方法有助于产生新的细胞系来表征醛固酮信号通路,也有助于更好地理解心脏、脉管系统、大脑和脂肪组织的磁共振生理学。本文综述了MR的结构、分子作用机制和转录调控,重点介绍了MR在细胞和分子水平上的最新进展。最后,通过从小鼠模型和人类疾病中获得的见解,将回顾其在生理学和病理生理学中的作用。未来对MR生物学的研究应该会导致新的治疗策略,在心血管疾病、神经保护、矿化皮质激素抵抗和代谢紊乱的管理中调节细胞特异性作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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