Groningen Biomolecular Sciences & Biotechnology Institute, University of Groningen, Groningen, the Netherlands.
Biochemistry & Cellular and Molecular Biology Department, University of Tennessee, Knoxville, TN, USA.
Plant Commun. 2021 Oct 13;3(1):100248. doi: 10.1016/j.xplc.2021.100248. eCollection 2022 Jan 10.
Photosystem I (PSI) is one of two photosystems involved in oxygenic photosynthesis. PSI of cyanobacteria exists in monomeric, trimeric, and tetrameric forms, in contrast to the strictly monomeric form of PSI in plants and algae. The tetrameric organization raises questions about its structural, physiological, and evolutionary significance. Here we report the ∼3.72 Å resolution cryo-electron microscopy structure of tetrameric PSI from the thermophilic, unicellular cyanobacterium sp. TS-821. The structure resolves 44 subunits and 448 cofactor molecules. We conclude that the tetramer is arranged via two different interfaces resulting from a dimer-of-dimers organization. The localization of chlorophyll molecules permits an excitation energy pathway within and between adjacent monomers. Bioinformatics analysis reveals conserved regions in the PsaL subunit that correlate with the oligomeric state. Tetrameric PSI may function as a key evolutionary step between the trimeric and monomeric forms of PSI organization in photosynthetic organisms.
光系统 I(PSI)是参与产氧光合作用的两个光系统之一。与植物和藻类中严格的 PSI 单体形式相比,蓝细菌中的 PSI 以单体、三聚体和四聚体形式存在。四聚体的组织形式引发了关于其结构、生理和进化意义的问题。在这里,我们报道了来自嗜热单细胞蓝细菌 sp. TS-821 的四聚体 PSI 的约 3.72 Å 分辨率冷冻电镜结构。该结构解析出 44 个亚基和 448 个辅因子分子。我们得出结论,四聚体通过源自二聚体-二聚体组织的两种不同界面进行排列。叶绿素分子的定位允许在相邻单体内部和之间进行激发能量传递。生物信息学分析揭示了 PsaL 亚基中与寡聚状态相关的保守区域。四聚体 PSI 可能是光合作用生物中 PSI 组织的三聚体和单体形式之间的关键进化步骤。