Graduate School of Medicine, Mie University, Tsu, 514-8507, Japan.
Imaging Section, Research Support Division, Okinawa Institute of Science and Technology Graduate University (OIST), 1919-1, Tancha, Onna-son, Kunigami-gun, Okinawa, 904-0495, Japan.
Nat Commun. 2020 Oct 2;11(1):4955. doi: 10.1038/s41467-020-18748-3.
The light-harvesting-reaction center complex (LH1-RC) from the purple phototrophic bacterium Thiorhodovibrio strain 970 exhibits an LH1 absorption maximum at 960 nm, the most red-shifted absorption for any bacteriochlorophyll (BChl) a-containing species. Here we present a cryo-EM structure of the strain 970 LH1-RC complex at 2.82 Å resolution. The LH1 forms a closed ring structure composed of sixteen pairs of the αβ-polypeptides. Sixteen Ca ions are present in the LH1 C-terminal domain and are coordinated by residues from the αβ-polypeptides that are hydrogen-bonded to BChl a. The Ca-facilitated hydrogen-bonding network forms the structural basis of the unusual LH1 redshift. The structure also revealed the arrangement of multiple forms of α- and β-polypeptides in an individual LH1 ring. Such organization indicates a mechanism of interplay between the expression and assembly of the LH1 complex that is regulated through interactions with the RC subunits inside.
来自紫色光养细菌硫氧还原菌(Thiorhodovibrio)菌株 970 的集光反应中心复合物(LH1-RC)在 960nm 处表现出 LH1 吸收最大值,这是任何含有细菌叶绿素(BChl)a 的物种中最大的红移吸收。在这里,我们展示了该菌株 970 LH1-RC 复合物在 2.82Å分辨率下的冷冻电镜结构。LH1 形成由十六对 αβ-多肽组成的闭合环结构。十六个 Ca 离子存在于 LH1 C 端结构域中,并由与 BChl a 形成氢键的 αβ-多肽上的残基配位。Ca 促进的氢键网络构成了 LH1 红移的结构基础。该结构还揭示了单个 LH1 环中多种形式的 α-和 β-多肽的排列。这种组织表明 LH1 复合物的表达和组装之间相互作用的机制是通过与内部 RC 亚基的相互作用来调节的。