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Kato, Koji Research Institute for Interdisciplinary Science, Advanced Research Field, and Graduate School of Environmental, Life, Natural Science and Technology, Okayama University ORCID Kaken ID publons researchmap
Nakajima, Yoshiki Research Institute for Interdisciplinary Science, Advanced Research Field, and Graduate School of Environmental, Life, Natural Science and Technology, Okayama University ORCID Kaken ID
Sakamoto, Runa Research Institute for Interdisciplinary Science, Advanced Research Field, and Graduate School of Environmental, Life, Natural Science and Technology, Okayama University
Kumazawa, Minoru Institute of Low Temperature Science, Hokkaido University
Ifuku, Kentaro Graduate School of Agriculture, Kyoto University
Ishikawa, Takahiro Institute of Agricultural and Life Sciences, Academic Assembly, Shimane University
Shen, Jian-Ren Research Institute for Interdisciplinary Science, Advanced Research Field, and Graduate School of Environmental, Life, Natural Science and Technology, Okayama University ORCID Kaken ID publons researchmap
Takabayashi, Atsushi Institute of Low Temperature Science, Hokkaido University
Nagao, Ryo Faculty of Agriculture, Shizuoka University
Abstract
Photosystem I (PSI) forms supercomplexes with light-harvesting complexes (LHCs) to perform oxygenic photosynthesis. Here, we report a 2.82-angstrom cryo–electron microscopy structure of the PSI-LHCI supercomplex from Euglena gracilis, a eukaryotic alga with secondary green alga-derived plastids. The structure reveals a PSI monomer core with eight subunits and 13 asymmetrically arranged LHCI proteins. Euglena LHCIs bind diadinoxanthin, which is one of the carotenoids typically associated with red-lineage LHCs and is not present in the canonical LHCI belt found in green-lineage PSI-LHCI structures. Phylogenetic analysis shows that the Euglena LHCIs originated from LHCII-related clades rather than from the green-lineage LHCI group and that the nuclear-encoded PSI subunit PsaD likely originated from cyanobacteria via horizontal gene transfer. These observations indicate a mosaic origin of the Euglena PSI-LHCI. Our findings uncover a noncanonical light-harvesting architecture and highlight the structural and evolutionary plasticity of photosynthetic systems, illustrating how endosymbiotic acquisition and lineage-specific adaptation shape divergent light-harvesting strategies.
Published Date
2025-10-31
Publication Title
Science Advances
Volume
volume11
Issue
issue44
Publisher
American Association for the Advancement of Science (AAAS)
Start Page
eaea6241
ISSN
2375-2548
Content Type
Journal Article
language
English
OAI-PMH Set
岡山大学
Copyright Holders
© 2025 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science.
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isVersionOf https://doi.org/10.1126/sciadv.aea6241
License
https://creativecommons.org/licenses/by/4.0/
Citation
Koji Kato et al., Structural insights into the divergent evolution of a photosystem I supercomplex in Euglena gracilis. Sci. Adv. 11, eaea6241 (2025). DOI: 10.1126/sciadv.aea6241
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