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叶绿体中的氧化还原信号传导:铁氧化还原蛋白/硫氧还蛋白系统。

Redox signaling in the chloroplast: the ferredoxin/thioredoxin system.

作者信息

Schürmann Peter

机构信息

Laborotoire de Biochimie Végétale, Université de Neuchâtel, Neuchâtel, Switzerland.

出版信息

Antioxid Redox Signal. 2003 Feb;5(1):69-78. doi: 10.1089/152308603321223559.

Abstract

Chloroplasts have developed a light-dependent system for the control of the activities of key enzymes involved in assimilatory (photosynthetic) and dissimilatory pathways, which allows a switch between these opposing pathways to prevent futile cycling. This regulatory system, known as the ferredoxin/thioredoxin system, consists of several proteins constituting a redox cascade that transmits the light signal perceived by chlorophyll to selected target proteins, thereby influencing their activity. A central component of the redox cascade is a novel enzyme, the ferredoxin:thioredoxin reductase, which is capable of reducing a disulfide bridge with the help of an iron-sulfur cluster. Recent developments on the elucidation of the structures of several implicated proteins and on the mechanism of signal transfer have greatly improved our understanding of this regulatory mechanism. This review describes the components of the redox cascade, the principal target proteins, and the mechanism of action of the light-signal transfer.

摘要

叶绿体已经形成了一种光依赖系统,用于控制参与同化(光合)和异化途径的关键酶的活性,这使得在这些相反的途径之间进行切换以防止无效循环。这种调节系统,即铁氧还蛋白/硫氧还蛋白系统,由几种蛋白质组成一个氧化还原级联反应,将叶绿素感知的光信号传递给选定的靶蛋白,从而影响它们的活性。氧化还原级联反应的一个核心成分是一种新型酶,铁氧还蛋白:硫氧还蛋白还原酶,它能够借助铁硫簇还原二硫键。最近在阐明几种相关蛋白质的结构和信号转导机制方面的进展,极大地增进了我们对这种调节机制的理解。本综述描述了氧化还原级联反应的组成成分、主要靶蛋白以及光信号转导的作用机制。

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