Stahlberg H, Dubochet J, Vogel H, Ghosh R
Biology Department, University of Lausanne (UNIL), CH-1015 Lausanne, Switzerland.
J Mol Biol. 1998 Oct 2;282(4):819-31. doi: 10.1006/jmbi.1998.1975.
The basic photosynthetic unit containing the reaction centre and the light-harvesting I complex (RC-LHI) of the purple non-sulphur bacterium Rhodospirillum rubrum was purified and reconstituted into two-dimensional (2D) membrane crystals. Transmission electron microscopy using conventional techniques and cryoelectron microscopy of the purified single particles and of 2D crystals yielded a projection of the RC-LHI complex at a resolution of at least 1.6 nm. In this projection the LHI ring appears to have a square symmetry and packs in a square crystal lattice. The square geometry of the LHI ring was observed also in images of single isolated particles of the RC-LHI complex. However, although the LHI units are packed identically within the crystal lattice, a new rotational analysis developed here showed that the reaction centres take up one of four possible orientations within the ring. This fourfold disorder supports our interpretation of a square ring symmetry and suggests that a hitherto undetected component may be present within the photosynthetic unit.
对含有紫色非硫细菌红螺菌反应中心和捕光 I 复合体(RC-LHI)的基本光合单位进行了纯化,并重构为二维(2D)膜晶体。使用传统技术的透射电子显微镜以及对纯化的单颗粒和 2D 晶体的冷冻电子显微镜观察,得到了分辨率至少为 1.6 nm 的 RC-LHI 复合体投影图。在此投影图中,LHI 环似乎具有正方形对称性,并排列在正方形晶格中。在 RC-LHI 复合体的单个分离颗粒图像中也观察到了 LHI 环的正方形几何形状。然而,尽管 LHI 单元在晶格中排列方式相同,但此处开发的一种新的旋转分析表明,反应中心在环内占据四种可能取向之一。这种四重无序支持了我们对正方形环对称性的解释,并表明光合单位中可能存在一种迄今未被检测到的成分。