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G蛋白偶联受体的非活性和活性状态以及超分子组织:计算建模的见解

Inactive and active states and supramolecular organization of GPCRs: insights from computational modeling.

作者信息

Fanelli Francesca, De Benedetti Pier G

机构信息

Dulbecco Telethon Institute, University of Modena and Reggio Emilia, Via Campi 183, 41100 Modena, Italy.

出版信息

J Comput Aided Mol Des. 2006 Jul-Aug;20(7-8):449-61. doi: 10.1007/s10822-006-9064-0. Epub 2006 Sep 29.

Abstract

Herein we make an overview of the results of our computational experiments aimed at gaining insight into the molecular mechanisms of GPCR functioning either in their normal conditions or when hit by gain-of-function or loss-of-function mutations. Molecular simulations of a number of GPCRs in their wild type and mutated as well as free and ligand-bound forms were instrumental in inferring the structural features, which differentiate the mutation- and ligand-induced active from the inactive states. These features essentially reside in the interaction pattern of the E/DRY arginine and in the degree of solvent exposure of selected cytosolic domains. Indeed, the active states differ from the inactive ones in the weakening of the interactions made by the highly conserved arginine and in the increase in solvent accessibility of the cytosolic interface between helices 3 and 6. Where possible, the structural hallmarks of the active and inactive receptor states are translated into molecular descriptors useful for in silico functional screening of novel receptor mutants or ligands. Computational modeling of the supramolecular organization of GPCRs and their intracellular partners is the current challenge toward a deep understanding of their functioning mechanisms.

摘要

在此,我们对计算实验结果进行概述,这些实验旨在深入了解G蛋白偶联受体(GPCR)在正常条件下,或受到功能获得性或功能丧失性突变影响时的分子机制。对多种野生型、突变型以及游离和配体结合形式的GPCR进行分子模拟,有助于推断区分突变和配体诱导的活性状态与非活性状态的结构特征。这些特征主要存在于E/DRY精氨酸的相互作用模式以及选定胞质结构域的溶剂暴露程度中。实际上,活性状态与非活性状态的不同之处在于,高度保守的精氨酸所形成的相互作用减弱,以及螺旋3和6之间胞质界面的溶剂可及性增加。在可能的情况下,活性和非活性受体状态的结构特征会转化为分子描述符,用于对新型受体突变体或配体进行计算机辅助功能筛选。对GPCR及其细胞内伴侣的超分子组织进行计算建模,是深入理解其功能机制的当前挑战。

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