Scheuring Simon, Seguin Jérôme, Marco Sergio, Lévy Daniel, Robert Bruno, Rigaud Jean-Louis
Institut Curie, Unité Mixte de Recherche-Centre National de la Recherche Scientifique 168 and Laboratoire de Recherche Correspondant-Commissariat à l'Energie Atomique 34V, 11 Rue Pierre et Marie Curie, 75231 Paris Cedex 05, France.
Proc Natl Acad Sci U S A. 2003 Feb 18;100(4):1690-3. doi: 10.1073/pnas.0437992100. Epub 2003 Feb 6.
In photosynthesis, highly organized multiprotein assemblies convert sunlight into biochemical energy with high efficiency. A challenge in structural biology is to analyze such supramolecular complexes in native membranes. Atomic force microscopy (AFM) with high lateral resolution, high signal-to-noise ratio, and the possibility to nanodissect biological samples is a unique tool to investigate multiprotein complexes at molecular resolution in situ. Here we present high-resolution AFM of the photosynthetic core complex in native Rhodopseudomonas viridis membranes. Topographs at 10-A lateral and approximately 1-A vertical resolution reveal a single reaction center (RC) surrounded by a closed ellipsoid of 16 light-harvesting (LH1) subunits. Nanodissection of the tetraheme cytochrome (4Hcyt) subunit from the RC allows demonstration that the L and M subunits exhibit an asymmetric topography intimately associated to the LH1 subunits located at the short ellipsis axis. This architecture implies a distance distribution between the antenna and the RC compared with a centered location of the RC within a circular LH1, which may influence the energy transfer within the core complex. The LH1 subunits rearrange into a circle after removal of the RC from the core complex.
在光合作用中,高度有序的多蛋白组装体能够高效地将阳光转化为生物化学能。结构生物学面临的一项挑战是分析天然膜中的此类超分子复合物。原子力显微镜(AFM)具有高横向分辨率、高信噪比以及对生物样品进行纳米切割的可能性,是一种在原位以分子分辨率研究多蛋白复合物的独特工具。在此,我们展示了嗜绿红假单胞菌天然膜中光合核心复合物的高分辨率原子力显微镜图像。横向分辨率为10埃、垂直分辨率约为1埃的形貌图显示,单个反应中心(RC)被由16个光捕获(LH1)亚基组成的封闭椭球体所包围。从反应中心对四血红素细胞色素(4Hcyt)亚基进行纳米切割表明,L亚基和M亚基呈现出与位于短椭圆轴处的LH1亚基紧密相关的不对称形貌。这种结构意味着与反应中心位于圆形LH1中心位置相比,天线与反应中心之间存在距离分布,这可能会影响核心复合物内的能量转移。从核心复合物中去除反应中心后,LH1亚基重排成一个圆圈。