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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Protein-protein interactions within photosystem II under photoprotection: the synergy between CP29 minor antenna, subunit S (PsbS) and zeaxanthin at all-atom resolution
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Protein-protein interactions within photosystem II under photoprotection: the synergy between CP29 minor antenna, subunit S (PsbS) and zeaxanthin at all-atom resolution

机译:光保护下的光系统II内的蛋白质 - 蛋白质相互作用:CP29次天线,亚基S(PSB)和玉米黄质的协同作用

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摘要

The assembly and disassembly of protein complexes within cells are crucial life-sustaining processes. In photosystem II (PSII) of higher plants, there is a delicate yet obscure balance between light harvesting and photo-protection under fluctuating light conditions, that involves protein-protein complexes. Recent breakthroughs in molecular dynamics (MD) simulations are combined with new approaches herein to provide structural and energetic insight into such a complex between the CP29 minor antenna and the PSII subunit S (PsbS). The microscopic model involves extensive sampling of bound and dissociated states at atomic resolution in the presence of photo-protective zeaxanthin (Zea), and reveals well defined protein-protein cross-sections. The complex is placed within PSII, and macroscopic connections are emerging (PsbS-CP29-CP24-CP47) along the energy transfer pathways from the antenna to the PSII core. These connections explain macroscopic observations in the literature, while the previously obscured atomic scale details are now revealed. The implications of these findings are discussed in the context of the Non-Photochemical Quenching (NPQ) of chlorophyll fluorescence, the down-regulatory mechanism of photosynthesis, that enables the protection of PSII against excess excitation load. Zea is found at the PsbS-CP29 cross-section and a pH-dependent equilibrium between PsbS dimer/monomers and the PsbS-CP29 dissociation/association is identified as the target for engineering tolerant plants with increased crop and biomass yields. Finally, the new MD based approaches can be used to probe protein-protein interactions in general, and the PSII structure provided can initiate large scale molecular simulations of the photosynthetic apparatus, under NPQ conditions.
机译:的组装和拆卸的细胞内蛋白复合物的关键是维持生命的过程。在光系统II(PSII)高等植物,有波动的光照条件下的光捕获和光保护之间的微妙又晦涩的平衡,涉及蛋白质 - 蛋白质复合物。在分子动力学最近的突破(MD)模拟与新的方法结合本文所提供的结构和精力充沛的洞察CP29次要天线和PSII亚基S(PSBS)之间的这样的复合物。微观模型涉及在光保护玉米黄质(玉蜀黍)的存在原子分辨率约束的和离解状态的广泛的取样,并揭示了良好限定的蛋白质 - 蛋白质的横截面。复杂的是放置在PSII,和宏观连接沿着从天线到PSII芯的能量传递途径新兴(PSBS-CP29-CP24-CP47)。这些连接在文献中解释的肉眼观察结果,而以前被遮掩的原子尺度的细节,现在透露。这些研究结果的意义在叶绿素荧光,光合作用的向下调节机制的非光化学淬灭(NPQ),使得能够PSII的针对过量激发负载保护的上下文中讨论。玉米是在PSBS-CP29横截面和PSBS之间的pH依赖性平衡二聚体/单体和PSBS-CP29解离/关联识别为目标对工程耐受性的植物具有增加的作物和生物量产率发现。最后,新的基于MD方法可用于探测在一般蛋白质 - 蛋白质相互作用,并且提供的PSII结构可以发起光合装置的大型分子模拟,NPQ条件下进行。

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