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G 蛋白偶联受体超家族的化学多样性。

Chemical Diversity in the G Protein-Coupled Receptor Superfamily.

机构信息

Division of Medicinal Chemistry, Faculty of Sciences, Amsterdam Institute for Molecules, Medicines and Systems (AIMMS), Vrije Universiteit Amsterdam, De Boelelaan 1108, Amsterdam 1081 HZ, The Netherlands; M.V. and A.J.K. contributed equally to this review.

The National Center for Drug Screening and CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 189 Guo Shou Jing Road, Pudong, Shanghai 201203, China.

出版信息

Trends Pharmacol Sci. 2018 May;39(5):494-512. doi: 10.1016/j.tips.2018.02.004. Epub 2018 Mar 22.

Abstract

G protein-coupled receptors (GPCRs) are the largest family of cell signaling transmembrane proteins that can be modulated by a plethora of chemical compounds. Systematic cheminformatics analysis of structurally and pharmacologically characterized GPCR ligands shows that cocrystallized GPCR ligands cover a significant part of chemical ligand space, despite their limited number. Many GPCR ligands and substructures interact with multiple receptors, providing a basis for polypharmacological ligand design. Experimentally determined GPCR structures represent a variety of binding sites and receptor-ligand interactions that can be translated to chemically similar ligands for which structural data are lacking. This integration of structural, pharmacological, and chemical information on GPCR-ligand interactions enables the extension of the structural GPCR-ligand interactome and the structure-based design of novel modulators of GPCR function.

摘要

G 蛋白偶联受体 (GPCRs) 是细胞信号转导跨膜蛋白中最大的家族,可被多种化学化合物调节。对结构和药理学特征明确的 GPCR 配体进行系统化学信息学分析表明,尽管数量有限,但共结晶的 GPCR 配体覆盖了很大一部分化学配体空间。许多 GPCR 配体和亚结构与多个受体相互作用,为多药理学配体设计提供了基础。实验确定的 GPCR 结构代表了多种结合位点和受体-配体相互作用,这些相互作用可以转化为结构数据缺乏的化学相似的配体。这种对 GPCR-配体相互作用的结构、药理学和化学信息的整合,使得结构 GPCR-配体相互作用组得以扩展,并基于结构设计新型 GPCR 功能调节剂成为可能。

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