GTPase激活的横向扩散模型及相关膜信号蛋白偶联的历史观点。

Cellular logistics Pub Date : 2014-06-04 eCollection Date: 2014-01-01 DOI:10.4161/cl.29389
Paul A Liebman
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引用次数: 2

摘要

本文总结了我们发现的G蛋白偶联受体(GPCR)视紫红质的横向扩散,以及单个激活的视紫红质可以通过这种扩散非共价催化GTP在棒盘膜上每秒与数千个GTP酶结合。GTPase与膜结合磷酸二酯酶(PDE)的快速偶联进一步通过cGMP水解放大信号,这对视觉转导至关重要。从这项工作中得出的重要结论是,生物膜可以独特地集中、定向反应,并为信号蛋白的快速、强大和适当控制的顺序相互作用提供合适的溶剂。与功能同样重要的是通过受体磷酸化(猝灭)和抑制蛋白结合及时控制和终止这种强大的扩增。GTPase激活蛋白(GAPs)和G蛋白信号调节因子(RGS)的下游动力学调节及其相关机制,以及膜结构域围栏、结构蛋白结合等设置的限制在相关系统中是必不可少的。
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A historical perspective on the lateral diffusion model of GTPase activation and related coupling of membrane signaling proteins.

Aspects of our discovery of lateral diffusion of the G protein coupled receptor (GPCR) rhodopsin and that a single activated rhodopsin can non-covalently catalyze GTP binding to thousands of GTPases per second on rod disk membranes via this diffusion are summarized herein. Rapid GTPase coupling to membrane-bound phosphodiesterase (PDE) further amplifies the signal via cGMP hydrolysis, essential to visual transduction. Important generalizations from this work are that biomembranes can uniquely concentrate, orient for reaction and provide a solvent appropriate to rapid, powerful and appropriately controlled sequential interaction of signaling proteins. Of equal importance to function is timely control and termination of such powerful amplification via receptor phosphorylation (quenching) and arrestin binding. Downstream kinetic modulation by GTPase activating proteins (GAPs) and regulators of G protein signaling (RGS) and related mechanisms as well as limitations set by membrane domain fencing, structural protein binding etc. can be essential in relevant systems.

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