当前对光导信号放大的理解。

Cellular logistics Pub Date : 2014-06-04 eCollection Date: 2014-01-01 DOI:10.4161/cl.29390
Vadim Y Arshavsky, Marie E Burns
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引用次数: 58

摘要

视觉信号转导或光转导的研究在阐明G蛋白信号传导的最一般原理方面发挥了关键作用,特别是在信号放大的概念方面,即相对较少数量的G蛋白偶联受体的激活转化为强大的下游信号事件的过程。在这篇文章中,我们总结了目前在低等和高等脊椎动物的活杆中对这一过程的定量理解。体外生化实验与完整杆状光感受器的电生理记录相结合表明,在对单个光子的光响应过程中,G蛋白分子的总数在小鼠中为~16,在青蛙中为~60。这进一步转化为G蛋白下游的~2000和~ 72000个cGMP分子的水解,这代表了光导级联中生化扩增的总程度。
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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Current understanding of signal amplification in phototransduction.

The studies of visual signal transduction, or phototransduction, have played a pivotal role in elucidating the most general principles of G protein signaling, particularly in regards to the concept of signal amplification, i.e., the process by which activation of a relatively small number of G protein coupled receptors is transformed into a robust downstream signaling event. In this essay, we summarize our current quantitative understanding of this process in living rods of lower and higher vertebrate animals. An integration of biochemical experiments in vitro with electrophysiological recordings from intact rod photoreceptors indicates that the total number of G protein molecules activated in the course of a light response to a single photon is ~16 in the mouse and ~60 in the frog. This further translates into hydrolysis of ~2000 and ~72 000 molecules of cGMP downstream of G protein, respectively, which represents the total degree of biochemical amplification in the phototransduction cascade.

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