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首页> 外文期刊>Frontiers in Plant Science >Environmental pH and the Requirement for the Extrinsic Proteins of Photosystem II in the Function of Cyanobacterial Photosynthesis
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Environmental pH and the Requirement for the Extrinsic Proteins of Photosystem II in the Function of Cyanobacterial Photosynthesis

机译:环境pH和测量系统II的外在蛋白质在蓝藻光合作用中的要求

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摘要

In one of the final stages of cyanobacterial Photosystem II (PS II) assembly, binding of up to four extrinsic proteins to PS II stabilizes the oxygen-evolving complex (OEC). Growth of cyanobacterial mutants deficient in certain combinations of these thylakoid-lumen-associated polypeptides is sensitive to changes in environmental pH, despite the physical separation of the membrane-embedded PS II complex from the external environment. In this perspective we discuss the effect of environmental pH on OEC function and photoautotrophic growth in cyanobacteria with reference to pH-sensitive PS II mutants lacking extrinsic proteins. We consider the possibilities that, compared to pH 10.0, pH 7.5 increases susceptibility to PS II-generated reactive oxygen species (ROS) causing photoinhibition and reducing PS II assembly in some mutants, and that perturbations to channels in the lumenal regions of PS II might alter the accessibility of water to the active site as well as egress of oxygen and protons to the thylakoid lumen. Reduced levels of PS II in these mutants, and reduced OEC activity arising from the disruption of substrate/product channels, could reduce the trans -thylakoid pH gradient (ΔpH), leading to the impairment of photosynthesis. Growth of some PS II mutants at pH 7.5 can be rescued by elevating CO_(2)levels, suggesting that the pH-sensitive phenotype might primarily be an indirect result of back-pressure in the electron transport chain that results in heightened production of ROS by the impaired photosystem.
机译:在蓝藻电极系统II(PS II)组件的最后阶段之一中,最多四种外在蛋白质与PS II的结合稳定了氧化复合物(OEC)。尽管膜 - 嵌入式PS II复合物与外部环境中的物理分离,但这些紫花状腔相关多肽的某些组合缺乏这些组合的蓝细菌突变体的生长对环境pH的变化敏感。在这种观点中,我们讨论了环境pH对缺乏外本蛋白质的pH敏感的PS II突变体在蓝藻中的OEC函数和光学营养生长的影响。我们认为,与pH10.0相比,pH 7.5的可能性会使PS II产生的活性氧物质(ROS)增加易感性,从而在某些突变体中导致PS II组件,并且在PS II的腔内区域的扰动可能将水的可达性改变为活性位点以及氧气和质子的出口到囊体内腔。这些突变体中的PS II的水平降低,并且由于基质/产品通道的破坏而产生的降低的OEC活性可以减少跨律致胆管pH梯度(Δph),导致光合作用的损害。 PH 7.5的一些PS II突变体的生长可以通过升高CO_(2)水平来拯救,表明pH敏感表型可能主要是电子传输链中背压的间接结果,导致ROS的产生增加受损的照片系统。

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