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G 蛋白偶联受体中的跨膜区:受体生物学中的灰姑娘?

Extramembranous Regions in G Protein-Coupled Receptors: Cinderella in Receptor Biology?

机构信息

CSIR-Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad, 500 007, India.

Academy of Scientific and Innovative Research, Ghaziabad, 201 002, India.

出版信息

J Membr Biol. 2019 Oct;252(4-5):483-497. doi: 10.1007/s00232-019-00092-3. Epub 2019 Aug 30.

Abstract

G protein-coupled receptors (GPCRs) are the largest class of membrane proteins involved in signal transduction and are characterized by seven transmembrane domain architecture interconnected by extra- and intracellular loops. These loops, along with the N- and C-terminal domains, constitute the extramembranous regions in GPCRs. These regions, accounting for ~ 40% or more amino acid residues across different GPCR classes, are distinct from the conserved transmembrane domains in terms of nonconservation of sequence, diversity in length, and conformational heterogeneity. Due to technical challenges in exploring the molecular basis underlying the relation between structure, dynamics, and function in these regions, their contribution to GPCR organization and signaling remain underappreciated. Despite existing literature on the involvement of GPCR loops in numerous aspects of GPCR biology, the functional relevance of GPCR loops in the context of their inherent conformational heterogeneity and probable membrane interaction are not well understood. This review focuses on highlighting these aspects of GPCR extramembranous regions in the overall context of GPCR organization, dynamics, and biology. We envision that a judicious combination of insights obtained from structured transmembrane domains and disordered extramembranous regions in GPCRs would be crucial in arriving at a comprehensive understanding of GPCR structure, function, and dynamics, thereby leading to efficient drug discovery.

摘要

G 蛋白偶联受体(GPCRs)是参与信号转导的最大类膜蛋白,其特征为七次跨膜结构域架构,由细胞外和细胞内环连接。这些环,连同 N-和 C-末端结构域,构成 GPCRs 的细胞外膜区域。这些区域在不同的 GPCR 类中占约 40%或更多的氨基酸残基,与保守的跨膜结构域在序列的非保守性、长度的多样性和构象异质性方面不同。由于在探索这些区域的结构、动力学和功能之间关系的分子基础方面存在技术挑战,它们对 GPCR 组织和信号转导的贡献仍未得到充分认识。尽管现有文献涉及 GPCR 环在 GPCR 生物学的许多方面的参与,但在其固有构象异质性和可能的膜相互作用的背景下,GPCR 环的功能相关性尚不清楚。本综述重点强调了 GPCR 细胞外区域在 GPCR 组织、动力学和生物学整体背景下的这些方面。我们设想,从 GPCR 中的结构跨膜结构域和无序细胞外区域获得的见解的明智结合,对于全面理解 GPCR 的结构、功能和动力学至关重要,从而导致有效的药物发现。

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