Wang Xiang-Ping, Wang Guang-Lei, Fu Yuan, Minamino Akane, Zou Mei-Juan, Ma Fei, Xu Bo, Wang-Otomo Zheng-Yu, Kimura Yukihiro, Madigan Michael T, Overmann Jörg, Yu Long-Jiang
Photosynthesis Research Center, Key Laboratory of Photobiology, Institute of Botany, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Commun Biol. 2024 Dec 19;7(1):1658. doi: 10.1038/s42003-024-07354-4.
Purple phototrophic bacteria produce two kinds of light-harvesting complexes that function to capture and transmit solar energy: the core antenna (LH1) and the peripheral antenna (LH2). The apoproteins of these antennas, encoded respectively by the genes pufBA and pucBA within and outside the photosynthetic gene cluster, respectively, exhibit conserved amino acid sequences and structural topologies suggesting they were derived from a shared ancestor. Here we present the structures of two photosynthetic complexes from Roseospirillum (Rss.) parvum 930I: an LH1-RC complex and a variant of the LH1 complex also encoded by pufBA that we designate as LH1'. The LH1-RC complex forms a closed elliptical structure consisting of 16 pairs of αβ-polypeptides that surrounds the RC. By contrast, the LH1' complex is a closed ring structure composed of 14 pairs of αβ-polypeptides, and it shows significant similarities to LH2 complexes both spectrally and structurally. Although LH2-like, the LH1' complex is larger than any known LH2 complexes, and genomic analyses of Rss. parvum revealed the absence of pucBA, genes that encode classical LH2 complexes. Characterization of the unique Rss. parvum photocomplexes not only underscores the diversity of such structures but also sheds new light on the evolution of light-harvesting complexes from phototrophic bacteria.
核心天线(LH1)和外周天线(LH2)。这些天线的脱辅基蛋白分别由光合基因簇内部和外部的基因pufBA和pucBA编码,它们具有保守的氨基酸序列和结构拓扑,表明它们起源于一个共同的祖先。在此,我们展示了来自小玫瑰螺菌(Rss.)930I的两种光合复合物的结构:一种LH1-RC复合物和一种同样由pufBA编码的LH1复合物变体,我们将其命名为LH1'。LH1-RC复合物形成一个封闭的椭圆形结构,由围绕反应中心(RC)的16对αβ多肽组成。相比之下,LH1'复合物是一个由14对αβ多肽组成的封闭环状结构,并且在光谱和结构上与LH2复合物都有显著相似性。尽管类似LH2,但LH1'复合物比任何已知的LH2复合物都要大,并且对小玫瑰螺菌的基因组分析表明其不存在编码经典LH2复合物的pucBA基因。对小玫瑰螺菌独特光合复合物的表征不仅强调了此类结构的多样性,也为光合细菌捕光复合物的进化提供了新的线索。