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黑素皮质素 4 受体:生理学、药理学和病理生理学。

The melanocortin-4 receptor: physiology, pharmacology, and pathophysiology.

机构信息

Department of Anatomy, Physiology, and Pharmacology, Auburn University, Alabama 36849-5519, USA.

出版信息

Endocr Rev. 2010 Aug;31(4):506-43. doi: 10.1210/er.2009-0037. Epub 2010 Feb 26.

Abstract

The melanocortin-4 receptor (MC4R) was cloned in 1993 by degenerate PCR; however, its function was unknown. Subsequent studies suggest that the MC4R might be involved in regulating energy homeostasis. This hypothesis was confirmed in 1997 by a series of seminal studies in mice. In 1998, human genetic studies demonstrated that mutations in the MC4R gene can cause monogenic obesity. We now know that mutations in the MC4R are the most common monogenic form of obesity, with more than 150 distinct mutations reported thus far. This review will summarize the studies on the MC4R, from its cloning and tissue distribution to its physiological roles in regulating energy homeostasis, cachexia, cardiovascular function, glucose and lipid homeostasis, reproduction and sexual function, drug abuse, pain perception, brain inflammation, and anxiety. I will then review the studies on the pharmacology of the receptor, including ligand binding and receptor activation, signaling pathways, as well as its regulation. Finally, the pathophysiology of the MC4R in obesity pathogenesis will be reviewed. Functional studies of the mutant MC4Rs and the therapeutic implications, including small molecules in correcting binding and signaling defect, and their potential as pharmacological chaperones in rescuing intracellularly retained mutants, will be highlighted.

摘要

黑素皮质素 4 受体(MC4R)于 1993 年通过简并 PCR 克隆;然而,其功能尚不清楚。随后的研究表明,MC4R 可能参与调节能量平衡。这一假说在 1997 年通过一系列在小鼠中的开创性研究得到证实。1998 年,人类遗传学研究表明,MC4R 基因的突变可导致单基因肥胖。我们现在知道,MC4R 的突变是最常见的单基因肥胖形式,迄今为止已报道了 150 多种不同的突变。本综述将总结 MC4R 的研究,从其克隆和组织分布到其在调节能量平衡、恶病质、心血管功能、葡萄糖和脂质代谢、生殖和性功能、药物滥用、疼痛感知、脑炎症和焦虑中的生理作用。然后,我将回顾该受体的药理学研究,包括配体结合和受体激活、信号通路以及其调节。最后,将综述 MC4R 在肥胖发病机制中的病理生理学。将重点介绍突变 MC4R 的功能研究及其治疗意义,包括纠正结合和信号缺陷的小分子,以及作为挽救细胞内保留突变体的药理学伴侣的潜在用途。

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