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G 蛋白偶联受体的分子进化:黑皮质素/黑皮质素受体。

Molecular evolution of GPCRs: Melanocortin/melanocortin receptors.

机构信息

Department of Biological SciencesUniversity of Denver, Denver, Colorado 80210, USADepartment of BiologyUniversity of Akron, Akron, Ohio 44325, USA

Department of Biological SciencesUniversity of Denver, Denver, Colorado 80210, USADepartment of BiologyUniversity of Akron, Akron, Ohio 44325, USA.

出版信息

J Mol Endocrinol. 2014 Jun;52(3):T29-42. doi: 10.1530/JME-14-0050.

Abstract

The melanocortin receptors (MCRs) are a family of G protein-coupled receptors that are activated by melanocortin ligands derived from the proprotein, proopiomelanocortin (POMC). During the radiation of the gnathostomes, the five receptors have become functionally segregated (i.e. melanocortin 1 receptor (MC1R), pigmentation regulation; MC2R, glucocorticoid synthesis; MC3R and MC4R, energy homeostasis; and MC5R, exocrine gland physiology). A focus of this review is the role that ligand selectivity plays in the hypothalamus/pituitary/adrenal-interrenal (HPA-I) axis of teleosts and tetrapods as a result of the exclusive ligand selectivity of MC2R for the ligand ACTH. A second focal point of this review is the roles that the accessory proteins melanocortin 2 receptor accessory protein 1 (MRAP1) and MRAP2 are playing in, respectively, the HPA-I axis (MC2R) and the regulation of energy homeostasis by neurons in the hypothalamus (MC4R) of teleosts and tetrapods. In addition, observations are presented on trends in the ligand selectivity parameters of cartilaginous fish, teleost, and tetrapod MC1R, MC3R, MC4R, and MC5R paralogs, and the modeling of the HFRW motif of ACTH(1-24) when compared with α-MSH. The radiation of the MCRs during the evolution of the gnathostomes provides examples of how the physiology of endocrine and neuronal circuits can be shaped by ligand selectivity, the intersession of reverse agonists (agouti-related peptides (AGRPs)), and interactions with accessory proteins (MRAPs).

摘要

黑皮质素受体(MCRs)是一类 G 蛋白偶联受体,可被来源于前蛋白、前阿黑皮素原(POMC)的黑皮质素配体激活。在颌口动物的辐射过程中,这五个受体的功能发生了分离(即黑素皮质素 1 受体(MC1R),色素沉着调节;MC2R,糖皮质激素合成;MC3R 和 MC4R,能量稳态;MC5R,外分泌腺生理学)。本文的重点是配体选择性在鱼类和四足动物下丘脑/垂体/肾上腺-间肾(HPA-I)轴中的作用,这是由于 MC2R 对 ACTH 配体的独特配体选择性所致。本文的另一个重点是辅助蛋白黑素皮质素 2 受体辅助蛋白 1(MRAP1)和 MRAP2 分别在鱼类和四足动物 HPA-I 轴(MC2R)和下丘脑神经元能量稳态调节中的作用(MC4R)。此外,还介绍了软骨鱼、鱼类和四足动物 MC1R、MC3R、MC4R 和 MC5R 旁系同源物的配体选择性参数的趋势,以及与 α-MSH 相比 ACTH(1-24)的 HFRW 基序的建模。在颌口动物进化过程中 MCRs 的辐射为内分泌和神经元回路的生理学如何通过配体选择性、反向激动剂(阿黑皮素相关肽(AGRP))的介入以及与辅助蛋白(MRAPs)的相互作用来塑造提供了范例。

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