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Photosystem II repair in plant chloroplasts - Regulation, assisting proteins and shared components with photosystem II biogenesis

机译:植物叶绿体中光系统II的修复-光系统II生物发生的调控,辅助蛋白质和共享成分

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Photosystem (PS) II is a multisubunit thylakoid membrane pigment-protein complex responsible for light-driven oxidation of water and reduction of plastoquinone. Currently more than 40 proteins are known to associate with PSII, either stably or transiently. The inherent feature of the PSII complex is its vulnerability in light, with the damage mainly targeted to one of its core proteins, the D1 protein. The repair of the damaged D1 protein, i.e. the repair cycle of PSII, initiates in the grana stacks where the damage generally takes place, but subsequently continues in non-appressed thylakoid domains, where many steps are common for both the repair and de novo assembly of PSII. The sequence of the (re)assembly steps of genuine PSII subunits is relatively well-characterized in higher plants. A number of novel findings have shed light into the regulation mechanisms of lateral migration of PSII subcomplexes and the repair as well as the (re)assembly of the complex. Besides the utmost importance of the PSII repair cycle for the maintenance of PSII functionality, recent research has pointed out that the maintenance of PSI is closely dependent on regulation of the PSII repair cycle. This review focuses on the current knowledge of regulation of the repair cycle of PSII in higher plant chloroplasts. Particular emphasis is paid on sequential assembly steps of PSII and the function of the number of PSII auxiliary proteins involved both in the biogenesis and repair of PSII. (C) 2015 The Authors. Published by Elsevier B.V.
机译:Photosystem(PS)II是一种多亚基类囊体膜色素-蛋白质复合物,负责光驱动水的氧化和还原质体醌。目前,已知有40多种蛋白质与PSII稳定或短暂缔合。 PSII复合物的固有特征是其在光线下的脆弱性,其破坏主要针对其核心蛋白之一D1蛋白。受损的D1蛋白的修复(即PSII的修复周期)始于通常发生损伤的格兰堆栈中,但随后在非受压的类囊体域中继续进行,在该过程中,修复和从头组装都需要很多步骤PSII。真正的PSII亚基的(重新)组装步骤的顺序在高等植物中相对较好。许多新颖的发现为PSII亚复合物的横向迁移,复合物的修复和(重新)组装提供了调控机制。除了PSII修复周期对于维持PSII功能的最重要意义外,最近的研究还指出,PSI的维护密切依赖于PSII修复周期的调节。这篇综述着重于目前对高等植物叶绿体中PSII修复周期的调控知识。特别强调PSII的顺序组装步骤以及参与PSII的生物发生和修复的PSII辅助蛋白的数量的功能。 (C)2015作者。由Elsevier B.V.发布

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