Structure of a tetrameric photosystem I from a glaucophyte alga Cyanophora paradoxa

Author:

Kato Koji,Nagao RyoORCID,Ueno Yoshifumi,Yokono MakioORCID,Suzuki Takehiro,Jiang Tian-Yi,Dohmae NaoshiORCID,Akita FusamichiORCID,Akimoto SeijiORCID,Miyazaki NaoyukiORCID,Shen Jian-RenORCID

Abstract

AbstractPhotosystem I (PSI) is one of the two photosystems functioning in light-energy harvesting, transfer, and electron transfer in photosynthesis. However, the oligomerization state of PSI is variable among photosynthetic organisms. We present a 3.8-Å resolution cryo-electron microscopic structure of tetrameric PSI isolated from the glaucophyte alga Cyanophora paradoxa, which reveals differences with PSI from other organisms in subunit composition and organization. The PSI tetramer is organized in a dimer of dimers with a C2 symmetry. Unlike cyanobacterial PSI tetramers, two of the four monomers are rotated around 90°, resulting in a completely different pattern of monomer-monomer interactions. Excitation-energy transfer among chlorophylls differs significantly between Cyanophora and cyanobacterial PSI tetramers. These structural and spectroscopic features reveal characteristic interactions and excitation-energy transfer in the Cyanophora PSI tetramer, suggesting that the Cyanophora PSI could represent a turning point in the evolution of PSI from prokaryotes to eukaryotes.

Funder

MEXT | Japan Society for the Promotion of Science

Takeda Science Foundation

TIA-Kakehashi grant, No.TK19-048

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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