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光转导G蛋白级联反应中的激活增益与动力学

Gain and kinetics of activation in the G-protein cascade of phototransduction.

作者信息

Lamb T D

机构信息

Physiological Laboratory, University of Cambridge, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1996 Jan 23;93(2):566-70. doi: 10.1073/pnas.93.2.566.

Abstract

The guanine nucleotide binding protein (G protein) cascade underlying phototransduction is one of the best understood of all signaling pathways. The diffusional interactions of the proteins underlying the cascade have been analyzed, both at a macroscopic level and also in terms of the stochastic nature of the molecular contacts. In response to a single activated rhodopsin (R*) formed as a result of a single photon hit, it can be shown that molecules of the G-protein transducin will be activated approximately linearly with time. This, in turn, will cause the number of activated molecules of the effector protein (the phosphodiesterase) also to increase linearly with time. These kinetics of protein activation provide an accurate description of the time course of the rising phase of the photoreceptor's electrical response over a wide range of flash intensities. Recent estimates indicate that at room temperature each R* triggers activation of the phosphodiesterase at a rate of 1000-2000 subunits.s-1. Now that a quantitative description of the activation steps in transduction has been obtained, perhaps the greatest challenge for the future is to provide a comprehensive description of the shutoff reactions, so that a complete account of the photoreceptor's response to light can be achieved.

摘要

光转导过程中潜在的鸟嘌呤核苷酸结合蛋白(G蛋白)级联反应是所有信号通路中最被深入了解的之一。已经从宏观层面以及分子接触的随机性质方面分析了该级联反应中相关蛋白质的扩散相互作用。对于因单个光子撞击形成的单个活化视紫红质(R*),可以证明G蛋白转导素分子将随时间近似呈线性被激活。反过来,这又会导致效应蛋白(磷酸二酯酶)的活化分子数量也随时间线性增加。蛋白质活化的这些动力学在很宽的闪光强度范围内准确描述了光感受器电反应上升阶段的时间进程。最近的估计表明,在室温下每个R*以1000 - 2000个亚基·秒⁻¹的速率触发磷酸二酯酶的活化。既然已经获得了转导过程中活化步骤的定量描述,那么未来最大的挑战或许是提供对关闭反应的全面描述,以便能够完整地解释光感受器对光的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6ac/40092/165bcd5dcf6c/pnas01506-0032-a.jpg

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