Konorty Marina, Kahana Nava, Linaroudis Alexandros, Minsky Abraham, Medalia Ohad
Department of Organic Chemistry, The Weizmann Institute of Science, Rehovot 76100, Israel.
J Struct Biol. 2008 Mar;161(3):393-400. doi: 10.1016/j.jsb.2007.09.014. Epub 2007 Sep 25.
During the photosynthetic process, highly organized membranal assemblies convert light into biochemical energy with high efficiency. We have used whole-mount cryo-electron tomography to study the intracellular architecture of the photosynthetic membranes of the anaerobic purple photosynthetic bacterium Rhodopseudomonas viridis, as well as the organization of the photosynthetic units within the membranes. Three-dimensional reconstruction demonstrates a continuity of the plasma membrane with the photosynthetic membranes that form tunnel-like structures with an average diameter of 31 nm+/-8 nm at the connection sites. The spacing between the photosynthetic membranes at their cytoplasmic faces was found to be 11 nm, thus enforcing a highly close packaging of the photosynthetic membranes. Analysis of successive tomographic slices allowed for derivation of the spacing between adjacent photosynthetic core complexes from a single-layered photosynthetic membrane, in situ. This analysis suggests that most, if not all, photosynthetic membranes in R. viridis are characterized by a similar two-dimensional hexagonal lattice organization.
在光合作用过程中,高度有序的膜组件能高效地将光能转化为生化能。我们利用整装冷冻电子断层扫描技术研究了厌氧紫色光合细菌绿硫红假单胞菌光合膜的细胞内结构,以及膜内光合单位的组织情况。三维重建显示,质膜与光合膜相连,在连接部位形成平均直径为31纳米±8纳米的隧道状结构。光合膜在细胞质面之间的间距为11纳米,从而实现了光合膜的高度紧密包装。对连续断层切片的分析使得能够原位推导单层光合膜中相邻光合核心复合物之间的间距。该分析表明,绿硫红假单胞菌中的大多数(如果不是全部)光合膜具有相似的二维六边形晶格组织特征。