The structure of PSI-LHCI from <i>Cyanidium caldarium</i> provides evolutionary insights into conservation and diversity of red-lineage LHCs.

Kato, Koji; Hamaguchi, Tasuku; Kumazawa, Minoru; Nakajima, Yoshiki; Ifuku, Kentaro; Hirooka, Shunsuke; Hirose, Yuu; Miyagishima, Shin-Ya et al. · Proc Natl Acad Sci U S A · 2024

basic_science · Level V

Where this comes from

Abstract

Light-harvesting complexes (LHCs) are diversified among photosynthetic organisms, and the structure of the photosystem I-LHC (PSI-LHCI) supercomplex has been shown to be variable depending on the species of organisms. However, the structural and evolutionary correlations of red-lineage LHCs are unknown. Here, we determined a 1.92-Å resolution cryoelectron microscopic structure of a PSI-LHCI supercomplex isolated from the red alga <i>Cyanidium caldarium</i> RK-1 (NIES-2137), which is an important taxon in the Cyanidiophyceae. We subsequently investigated the correlations of PSI-LHCIs from different organisms through structural comparisons and phylogenetic analysis. The PSI-LHCI structure obtained shows five LHCI subunits surrounding a PSI-monomer core. The five LHCIs are composed of two Lhcr1s, two Lhcr2s, and one Lhcr3. Phylogenetic analysis of LHCs bound to PSI in the red-lineage algae showed clear orthology of LHCs between <i>C. caldarium</i> and <i>Cyanidioschyzon merolae</i>, whereas no orthologous relationships were found between <i>C. caldarium</i> Lhcr1-3 and LHCs in other red-lineage PSI-LHCI structures. These findings provide evolutionary insights into conservation and diversity of red-lineage LHCs associated with PSI.

Medical subject headings