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莱茵衣藻和聚球藻光合系统II复合物的三维结构有助于比较它们的放氧复合体组织。

Three-dimensional structure of Chlamydomonas reinhardtii and Synechococcus elongatus photosystem II complexes allows for comparison of their oxygen-evolving complex organization.

作者信息

Nield J, Kruse O, Ruprecht J, da Fonseca P, Büchel C, Barber J

机构信息

Wolfson Laboratories, Biochemistry Department, Imperial College of Science, Technology and Medicine, London SW7 2AY, United Kingdom.

出版信息

J Biol Chem. 2000 Sep 8;275(36):27940-6. doi: 10.1074/jbc.M003069200.

Abstract

Electron microscopy and single-particle analyses have been carried out on negatively stained photosystem II (PSII) complexes isolated from the green alga Chlamydomonas reinhardtii and the thermophilic cyanobacterium Synechococcus elongatus. The analyses have yielded three-dimensional structures at 30-A resolution. Biochemical analysis of the C. reinhardtii particle suggested it to be very similar to the light-harvesting complex II (LHCII).PSII supercomplex of spinach, a conclusion borne out by its three-dimensional structure. Not only was the C. reinhardtii LHCII.PSII supercomplex dimeric and of comparable size and shape to that of spinach, but the structural features for the extrinsic OEC subunits bound to the lumenal surface were also similar thus allowing identification of the PsbO, PsbP, and PsbQ OEC proteins. The particle isolated from S. elongatus was also dimeric and retained its OEC proteins, PsbO, PsbU, and PsbV (cytochrome c(550)), which were again visualized as protrusions on the lumenal surface of the complex. The overall size and shape of the cyanobacterial particle was similar to that of a PSII dimeric core complex isolated from spinach for which higher resolution structural data are known from electron crystallography. By building the higher resolution structural model into the projection maps it has been possible to relate the positioning of the OEC proteins of C. reinhardtii and S. elongatus with the underlying transmembrane helices of other major intrinsic subunits of the core complex, D1, D2, CP47, and CP43 proteins. It is concluded that the PsbO protein is located over the CP47 and D2 side of the reaction center core complex, whereas the PsbP/PsbQ and PsbV/PsbU are positioned over the lumenal surface of the N-terminal region of the D1 protein. However, the mass attributed to PsbV/PsbU seems to bridge across to the PsbO, whereas the PsbP/PsbQ proteins protrude out more from the lumenal surface. Nevertheless, within the resolution and quality of the data, the relative positions of the center of masses for OEC proteins of C. reinhardtii and S. elongatus are similar and consistent with those determined previously for the OEC proteins of spinach.

摘要

已对从绿藻莱茵衣藻和嗜热蓝藻聚球藻中分离出的经负染色的光系统II(PSII)复合物进行了电子显微镜和单颗粒分析。这些分析得出了分辨率为30埃的三维结构。对莱茵衣藻颗粒的生化分析表明,它与菠菜的光捕获复合物II(LHCII).PSII超复合物非常相似,这一结论由其三维结构得到证实。莱茵衣藻LHCII.PSII超复合物不仅是二聚体,其大小和形状与菠菜的相当,而且结合在腔表面的外在放氧复合体(OEC)亚基的结构特征也相似,从而能够鉴定出PsbO、PsbP和PsbQ OEC蛋白。从聚球藻中分离出的颗粒也是二聚体,并保留了其OEC蛋白PsbO、PsbU和PsbV(细胞色素c(550)),这些蛋白同样被可视化为复合物腔表面的突起。蓝藻颗粒的整体大小和形状与从菠菜中分离出的PSII二聚体核心复合物相似,对于后者,已通过电子晶体学获得了更高分辨率的结构数据。通过将更高分辨率结构模型构建到投影图中,得以将莱茵衣藻和聚球藻的OEC蛋白的定位与核心复合物其他主要内在亚基(D1、D2、CP47和CP43蛋白)的潜在跨膜螺旋联系起来。得出的结论是,PsbO蛋白位于反应中心核心复合物的CP47和D2一侧,而PsbP/PsbQ和PsbV/PsbU位于D1蛋白N端区域的腔表面上方。然而,归因于PsbV/PsbU的质量似乎横跨到PsbO,而PsbP/PsbQ蛋白从腔表面突出得更多。尽管如此,在数据的分辨率和质量范围内,莱茵衣藻和聚球藻的OEC蛋白质心的相对位置相似,并且与先前为菠菜的OEC蛋白确定的位置一致。

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