Mapping the absorption landscape of far-red Photosystem II

H Ho Fong Leong G Giovanni Consoli G Geoffry A. Davis B Ben Hancox-Lachman K Kenta Renard F Fiazall Tufail L Lauren E. Lee L Lucas Gautier J James W. Murray A Andrea Fantuzzi A A. William Rutherford

Abstract

Abstract Far-red light photoacclimation enables some cyanobacteria to survive in white-light-depleted environments by extending the red limit of photosynthesis. In far-red Photosystem II, paralogous subunits replace their canonical counterparts, allowing the incorporation of some chlorophyll f molecules and one chlorophyll d that are red-shifted and spectrally distinct from the chlorophyll a manifold, and from each other. Here, we present a comparative study of far-red Photosystem II from Chroococcidiopsis thermalis PCC 7203 and Calothrix sp. NIES-3974. In C. thermalis , the cryo-electron microscopy structure reveals the far-red-exclusive subunit, PsbH2’, which forms part of a chlorophyll f binding site. We also assign four chlorophyll f sites using sequence comparisons and electrostatic potential analyses. In Calothrix, psbH2’ is absent, and the same analyses show that only two of these chlorophyll f  sites are present. Comparative phylogenetic, structural, and spectroscopic analyses allow the assignment of specific wavelengths to all the red-shifted chlorophylls. This provides the framework needed to model excitation energy transfer in far-red Photosystem II, and to understand the conserved features that allow survival under far-red light.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 06, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

H

Ho Fong Leong

G

Giovanni Consoli

G

Geoffry A. Davis

B

Ben Hancox-Lachman

K

Kenta Renard

F

Fiazall Tufail

L

Lauren E. Lee

L

Lucas Gautier

J

James W. Murray

A

Andrea Fantuzzi

A

A. William Rutherford