1] Department of Chemistry, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan [2].
1] Faculty of Science, Ibaraki University, Mito, Ibaraki 310-8512, Japan [2].
Nature. 2014 Apr 10;508(7495):228-32. doi: 10.1038/nature13197. Epub 2014 Mar 26.
The light-harvesting core antenna (LH1) and the reaction centre (RC) of purple photosynthetic bacteria form a supramolecular complex (LH1-RC) to use sunlight energy in a highly efficient manner. Here we report the first near-atomic structure, to our knowledge, of a LH1-RC complex, namely that of a Ca(2+)-bound complex from Thermochromatium tepidum, which reveals detailed information on the arrangement and interactions of the protein subunits and the cofactors. The RC is surrounded by 16 heterodimers of the LH1 αβ-subunit that form a completely closed structure. The Ca(2+) ions are located at the periplasmic side of LH1. Thirty-two bacteriochlorophyll and 16 spirilloxanthin molecules in the LH1 ring form an elliptical assembly. The geometries of the pigment assembly involved in the absorption characteristics of the bacteriochlorophyll in LH1 and excitation energy transfer among the pigments are reported. In addition, possible ubiquinone channels in the closed LH1 complex are proposed based on the atomic structure.
捕光天线核心复合物(LH1)和反应中心(RC)的紫色光合细菌形成一个超分子复合物(LH1-RC),以高效地利用太阳光能量。在这里,我们报告了第一个近原子结构,据我们所知,是来自嗜热着色菌的 Ca(2+)-结合复合物的 LH1-RC 复合物,它揭示了蛋白亚基和辅因子的排列和相互作用的详细信息。RC 被 16 个 LH1αβ-亚基的异二聚体包围,形成一个完全封闭的结构。Ca(2+)离子位于 LH1 的周质侧。LH1 环中的 32 个细菌叶绿素和 16 个细菌视黄醛分子形成一个椭圆形的组装体。报告了涉及 LH1 中细菌叶绿素吸收特性和色素间激发能量转移的色素组装体的几何形状。此外,根据原子结构,提出了封闭的 LH1 复合物中可能的泛醌通道。