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G蛋白偶联受体配体解离的分子基础及停留时间预测

Molecular Basis of Ligand Dissociation from G Protein-Coupled Receptors and Predicting Residence Time.

作者信息

Guo Dong, IJzerman Adriaan P

机构信息

Jiangsu Key Laboratory of New Drug Research and Clinical Pharmacy, Xuzhou Medical University, 209 Tongshan Road, Xuzhou, 221004, Jiangsu, China.

Division of Medicinal Chemistry, Leiden Academic Centre for Drug Research (LACDR), Leiden University, P.O. Box 9502, 2300, RA, Leiden, The Netherlands.

出版信息

Methods Mol Biol. 2018;1705:197-206. doi: 10.1007/978-1-4939-7465-8_9.

Abstract

G protein-coupled receptors (GPCRs) are integral membrane proteins and represent the largest class of drug targets. During the past decades progress in structural biology has enabled the crystallographic elucidation of the architecture of these important macromolecules. It also provided atomic-level visualization of ligand-receptor interactions, dramatically boosting the impact of structure-based approaches in drug discovery. However, knowledge obtained through crystallography is limited to static structural information. Less information is available showing how a ligand associates with or dissociates from a given receptor, whose importance is in fact increasingly recognized by the drug research community. Owing to recent advances in computer power and algorithms, molecular dynamics stimulations have become feasible that help in analyzing the kinetics of the ligand binding process. Here, we review what is currently known about the dynamics of GPCRs in the context of ligand association and dissociation, as determined through both crystallography and computer simulations. We particularly focus on the molecular basis of ligand dissociation from GPCRs and provide case studies that predict ligand dissociation pathways and residence time.

摘要

G蛋白偶联受体(GPCRs)是整合膜蛋白,也是最大的一类药物靶点。在过去几十年中,结构生物学的进展使得人们能够通过晶体学阐明这些重要大分子的结构。它还提供了配体 - 受体相互作用的原子水平可视化,极大地推动了基于结构的方法在药物发现中的影响。然而,通过晶体学获得的知识仅限于静态结构信息。关于配体如何与给定受体结合或解离的信息较少,而药物研究界实际上越来越认识到这一点的重要性。由于计算机能力和算法的最新进展,分子动力学模拟已变得可行,有助于分析配体结合过程的动力学。在这里,我们综述了目前已知的关于GPCRs在配体结合和解离背景下的动力学情况,这些情况是通过晶体学和计算机模拟确定的。我们特别关注配体从GPCRs解离的分子基础,并提供预测配体解离途径和停留时间的案例研究。

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