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Crystal Structure of Monomeric Photosystem II from Thermosynechococcus elongatus at 3.6-Å Resolution

机译:单体光系统II的晶体结构 伸长嗜热球菌在3.6-Å 解析度

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摘要

The membrane-embedded photosystem II core complex (PSIIcc) uses light energy to oxidize water in photosynthesis. Information about the spatial structure of PSIIcc obtained from x-ray crystallography was so far derived from homodimeric PSIIcc of thermophilic cyanobacteria. Here, we report the first crystallization and structural analysis of the monomeric form of PSIIcc with high oxygen evolution capacity, isolated from Thermosynechococcus elongatus. The crystals belong to the space group C2221, contain one monomer per asymmetric unit, and diffract to a resolution of 3.6 Å. The x-ray diffraction pattern of the PSIIcc-monomer crystals exhibit less anisotropy (dependence of resolution on crystal orientation) compared with crystals of dimeric PSIIcc, and the packing of the molecules within the unit cell is different. In the monomer, 19 protein subunits, 35 chlorophylls, two pheophytins, the non-heme iron, the primary plastoquinone QA, two heme groups, 11 β-carotenes, 22 lipids, seven detergent molecules, and the Mn4Ca cluster of the water oxidizing complex could be assigned analogous to the dimer. Based on the new structural information, the roles of lipids and protein subunits in dimer formation of PSIIcc are discussed. Due to the lack of non-crystallographic symmetry and the orientation of the membrane normal of PSIIcc perpendicular (∼87°) to the crystallographic b-axis, further information about the structure of the Mn4Ca cluster is expected to become available from orientation-dependent spectroscopy on this new crystal form.
机译:膜嵌入的光系统II核心复合物(PSIIcc)使用光能在光合作用中氧化水。迄今为止,从X射线晶体学获得的关于PSIIcc的空间结构的信息来自嗜热蓝细菌的同型二聚体PSIIcc。在这里,我们报道了具有高氧释放能力的PSIIcc单体形式的第一结晶和结构分析,该单体形式是从长嗜热嗜球菌分离的。晶体属于空间群C2221,每个不对称单元包含一个单体,并且衍射至3.6 resolution的分辨率。与二聚PSIIcc的晶体相比,PSIIcc单体晶体的X射线衍射图显示出较小的各向异性(分辨率取决于晶体取向),并且分子在单位晶格中的堆积不同。在单体中,有19个蛋白质亚基,35个叶绿素,2个脱镁叶绿素,非血红素铁,原生质体醌QA,2个血红素基团,11个β-胡萝卜素,22个脂质,7个去污剂分子和水氧化复合物的Mn4Ca簇可以分配为类似于二聚体。根据新的结构信息,脂质和蛋白质亚基在二聚体形成中的作用 讨论PSIIcc。由于缺乏非晶体对称性和 PSIIcc膜法线垂直方向 相对于结晶b轴(〜87°), 有关Mn4Ca团簇结构的更多信息是 有望从这种新的取向相关光谱学中获得 晶体形式。

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