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Structural basis for molecular assembly of fucoxanthin chlorophyll /-binding proteins in a diatom photosystem I supercomplex. | LitMetric

AI Article Synopsis

  • Photosynthetic organisms have diverse light-harvesting complexes (LHCs) that connect with photosystem I (PSI) to form supercomplexes, but their binding mechanisms are not fully understood.* -
  • This study determined the structure of a PSI supercomplex containing fucoxanthin chlorophyll-binding proteins (FCPs) from the diatom CCMP1335, identifying five specific FCPI subunits.* -
  • Structural analyses revealed important protein interactions and evolutionary conservation of motifs that help FCPI subunits selectively bind to PSI, advancing our understanding of diatom assembly processes.*

Article Abstract

Photosynthetic organisms exhibit remarkable diversity in their light-harvesting complexes (LHCs). LHCs are associated with photosystem I (PSI), forming a PSI-LHCI supercomplex. The number of LHCI subunits, along with their protein sequences and pigment compositions, has been found to differ greatly among the PSI-LHCI structures. However, the mechanisms by which LHCIs recognize their specific binding sites within the PSI core remain unclear. In this study, we determined the cryo-electron microscopy structure of a PSI supercomplex incorporating fucoxanthin chlorophyll /-binding proteins (FCPs), designated as PSI-FCPI, isolated from the diatom CCMP1335. Structural analysis of PSI-FCPI revealed five FCPI subunits associated with a PSI monomer; these subunits were identified as RedCAP, Lhcr3, Lhcq10, Lhcf10, and Lhcq8. Through structural and sequence analyses, we identified specific protein-protein interactions at the interfaces between FCPI and PSI subunits, as well as among FCPI subunits themselves. Comparative structural analyses of PSI-FCPI supercomplexes, combined with phylogenetic analysis of FCPs from and the diatom , underscore the evolutionary conservation of protein motifs crucial for the selective binding of individual FCPI subunits. These findings provide significant insights into the molecular mechanisms underlying the assembly and selective binding of FCPIs in diatoms.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11527431PMC
http://dx.doi.org/10.7554/eLife.99858DOI Listing

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