Theme and variations on kinetics of GPCR activation/deactivation.

IF 2.3
Jean-Pierre Vilardaga
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Abstract

G protein-coupled receptors (GPCRs) initiate intracellular signaling pathways in response to physiologically and medically important extracellular ligands such as peptide and large glycoprotein hormones, neurotransmitters, sensory stimuli (odorant and taste molecules, light), calcium, l-amino acids, and are the target of many clinical drugs. The conversion of these extracellular stimuli into intracellular signals involves sequential and reversible reactions that initially take place at the plasma membrane. These reactions are mediated not only by dynamic interactions between ligands, receptors and heterotrimeric G proteins, but also by conformational changes associated with the activation/deactivation process of each protein. This review discusses the kinetic characteristics and rate-limiting reactions engaged in signal propagation that are involved in systems as diverse as neurotransmitter and hormonal signaling, and that have been recorded in live cells by Förster resonance energy transfer (FRET) approaches.

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GPCR激活/失活动力学的主题和变化。
G蛋白偶联受体(gpcr)启动细胞内信号通路,响应生理和医学上重要的细胞外配体,如肽和大糖蛋白激素、神经递质、感觉刺激(气味和味道分子、光)、钙、l-氨基酸,是许多临床药物的靶点。这些细胞外刺激转化为细胞内信号涉及最初发生在质膜上的连续可逆反应。这些反应不仅通过配体、受体和异三聚体G蛋白之间的动态相互作用介导,而且还通过与每种蛋白质的激活/失活过程相关的构象变化介导。这篇综述讨论了参与信号传播的动力学特征和限速反应,这些反应涉及神经递质和激素信号等多种系统,并已通过Förster共振能量传递(FRET)方法在活细胞中记录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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