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Functional architecture of higher plant photosystem II supercomplexes

机译:高等植物光系统II超复合物的功能架构

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摘要

Photosystem II ( PSII) is a large multiprotein complex, which catalyses water splitting and plastoquinone reduction necessary to transform sunlight into chemical energy. Detailed functional and structural studies of the complex from higher plants have been hampered by the impossibility to purify it to homogeneity. In this work, homogeneous preparations ranging from a newly identified particle composed by a monomeric core and antenna proteins to the largest C(2)S(2)M(2) supercomplex were isolated. Characterization by biochemical methods and single particle electron microscopy allowed to relate for the first time the supramolecular organization to the protein content. A projection map of C(2)S(2)M(2) at 12 angstrom resolution was obtained, which allowed determining the location and the orientation of the antenna proteins. Comparison of the supercomplexes obtained from WT and Lhcb-deficient plants reveals the importance of the individual subunits for the supramolecular organization. The functional implications of these findings are discussed and allow redefining previous suggestions on PSII energy transfer, assembly, photoinhibition, state transition and non-photochemical quenching. The EMBO Journal (2009) 28, 3052-3063. doi: 10.1038/emboj.2009.232; Published online 20 August 2009
机译:Photosystem II(PSII)是一种大型的多蛋白复合物,可催化水分解和质体醌还原,将阳光转化为化学能。无法将其纯化为均一性阻碍了来自高等植物的复合物的详细功能和结构研究。在这项工作中,均一的制备物被分离,从新发现的由单体核心和触角蛋白组成的颗粒到最大的C(2)S(2)M(2)超复合物。通过生化方法和单粒子电子显微镜表征,首次使超分子组织与蛋白质含量有关。获得了C(2)S(2)M(2)在12埃分辨率下的投影图,可以确定天线蛋白的位置和方向。从野生型和Lhcb缺陷型植物获得的超复合物的比较揭示了超分子组织中各个亚基的重要性。讨论了这些发现的功能含义,并允许重新定义关于PSII能量转移,组装,光抑制,状态转变和非光化学猝灭的先前建议。 EMBO Journal(2009)28,3052-3063。 doi:10.1038 / emboj.2009.232; 2009年8月20日在线发布

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