Structure of a photosystem II-FCPII supercomplex from a haptophyte reveals a distinct antenna organization.
basic_science · Level V
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- Record sourced from PubMed, PMID 40325014.
- Also identified by DOI 10.1038/s41467-025-59512-9 and PMC identifier 12053590.
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Abstract
Haptophytes are unicellular algae that produce 30 to 50% of biomass in oceans. Among haptophytes, a subset named coccolithophores is characterized by calcified scales. Despite the importance of coccolithophores in global carbon fixation and CaCO<sub>3</sub> production, their energy conversion system is still poorly known. Here we report a cryo-electron microscopic structure of photosystem II (PSII)-fucoxanthin chlorophyll c-binding protein (FCPII) supercomplex from Chyrostila roscoffensis, a representative of coccolithophores. This complex has two sets of six dimeric and monomeric FCPIIs, with distinct orientations. Interfaces of both FCPII/FCPII and FCPII/core differ from previously reported. We also determine the sequence of Psb36, a subunit previously found in diatoms and red algae. The principal excitation energy transfer (EET) pathways involve mainly 5 FCPIIs, where one FCPII monomer mediates EET to CP47. Our findings provide a solid structural basis for EET and energy dissipation pathways occurring in coccolithophores.
Medical subject headings
- Photosystem II Protein Complex
- Haptophyta
- Chlorophyll Binding Proteins