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含氧光合真核生物中光保护天线蛋白的进化。

The evolution of the photoprotective antenna proteins in oxygenic photosynthetic eukaryotes.

机构信息

School of Biological and Chemical Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, U.K.

出版信息

Biochem Soc Trans. 2018 Oct 19;46(5):1263-1277. doi: 10.1042/BST20170304. Epub 2018 Aug 28.

Abstract

Photosynthetic organisms require rapid and reversible down-regulation of light harvesting to avoid photodamage. Response to unpredictable light fluctuations is achieved by inducing energy-dependent quenching, qE, which is the major component of the process known as non-photochemical quenching (NPQ) of chlorophyll fluorescence. qE is controlled by the operation of the xanthophyll cycle and accumulation of specific types of proteins, upon thylakoid lumen acidification. The protein cofactors so far identified to modulate qE in photosynthetic eukaryotes are the photosystem II subunit S (PsbS) and light-harvesting complex stress-related (LHCSR/LHCX) proteins. A transition from LHCSR- to PsbS-dependent qE took place during the evolution of the Viridiplantae (also known as 'green lineage' organisms), such as green algae, mosses and vascular plants. Multiple studies showed that LHCSR and PsbS proteins have distinct functions in the mechanism of qE. LHCX(-like) proteins are closely related to LHCSR proteins and found in 'red lineage' organisms that contain secondary red plastids, such as diatoms. Although LHCX proteins appear to control qE in diatoms, their role in the mechanism remains poorly understood. Here, we present the current knowledge on the functions and evolution of these crucial proteins, which evolved in photosynthetic eukaryotes to optimise light harvesting.

摘要

光合生物需要快速且可逆地下调光捕获,以避免光损伤。通过诱导能量依赖的猝灭(qE)来应对不可预测的光波动,qE 是叶绿素荧光非光化学猝灭(NPQ)过程的主要组成部分。qE 受叶黄素循环的运转和特定类型蛋白质的积累控制,这是在类囊体腔酸化时发生的。迄今为止,已在光合真核生物中鉴定出调节 qE 的蛋白质辅因子是光系统 II 亚基 S(PsbS)和光捕获复合物应激相关(LHCSR/LHCX)蛋白。在绿藻门(也称为“绿色谱系”生物)等光合生物的进化过程中,从 LHCSR 到 PsbS 依赖的 qE 发生了转变,例如绿藻、苔藓和维管植物。多项研究表明,LHCSR 和 PsbS 蛋白在 qE 机制中具有不同的功能。LHCX(类)蛋白与 LHCSR 蛋白密切相关,存在于含有次级红色质体的“红色谱系”生物中,例如硅藻。尽管 LHCX 蛋白似乎控制着硅藻中的 qE,但它们在机制中的作用仍知之甚少。在这里,我们介绍了这些关键蛋白质的功能和进化的最新知识,它们在光合真核生物中进化以优化光捕获。

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