Cryo-EM structures of naturally occurring dimeric photosystem II complexes lacking the Mn4CaO5 cluster

Zhao Z, Vercellino I, Whitelegge JP, Maghlaoui K, Białek W, Nixon PJ, Sazanov LA. 2026. Cryo-EM structures of naturally occurring dimeric photosystem II complexes lacking the Mn4CaO5 cluster. Nature Communications. 17, 8433.

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Author
Zhao, ZiyuISTA; Vercellino, IreneISTA ; Whitelegge, Julian P.; Maghlaoui, Karim; Białek, Wojciech; Nixon, Peter J.; Sazanov, Leonid AISTA

Corresponding author has ISTA affiliation

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Abstract
Robust oxygenic photosynthesis requires the efficient assembly and repair of the multi-subunit oxygen-evolving photosystem II (PSII) complex. Previous cryogenic electron microscopy (cryo-EM) structures of PSII assembly/disassembly intermediates have relied on the analysis of deletion mutants or removal of PSII subunits in vitro. Here we report the cryo-EM structures of naturally occurring dimeric PSII intermediates from the cyanobacterium Thermosynechococcus vestitus at a resolution of about 2.2 Å. These intermediates contain inactive dimers lacking the oxygen-evolving complex (OEC) and semi-active dimers with the OEC present in one of the two monomers. Our structural data provide a mechanism for how assembly and disassembly of the Mn4CaO5 cluster is coordinated with the binding and release of the extrinsic proteins: restructuring of the C-terminal tail of D1 subunit during assembly or disassembly of the Mn cluster triggers conformational changes in D2, CP47 and CP43 to drive the binding/release of the extrinsic proteins. A combination of structural and mass spectrometry data also suggests that the inactive PSII complexes may include damaged complexes containing oxidized D1-His332, a monodentate ligand to one of the Mn ions of the OEC.
Publishing Year
Date Published
2026-08-17
Journal Title
Nature Communications
Publisher
Springer Nature
Acknowledgement
P.J.N. is grateful for the support from the Imperial College Electron Microscopy Center. L.A.S. acknowledges the support from the Scientific Service Units (SSU) of IST Austria: the Electron Microscopy Facility (EMF), the Life Science Facility (LSF) and the IST high-performance computing cluster. P.J.N. is grateful for the support of the Biotechnology & Biological Sciences Research Council (awards BB/I00937X/1, BB/L003260/1 and BB/P00931X/1). L.A.S. is grateful to IST Austria for providing the funding.
Volume
17
Article Number
8433
eISSN
IST-REx-ID

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Zhao Z, Vercellino I, Whitelegge JP, et al. Cryo-EM structures of naturally occurring dimeric photosystem II complexes lacking the Mn4CaO5 cluster. Nature Communications. 2026;17. doi:10.1038/s41467-026-75324-x
Zhao, Z., Vercellino, I., Whitelegge, J. P., Maghlaoui, K., Białek, W., Nixon, P. J., & Sazanov, L. A. (2026). Cryo-EM structures of naturally occurring dimeric photosystem II complexes lacking the Mn4CaO5 cluster. Nature Communications. Springer Nature. https://doi.org/10.1038/s41467-026-75324-x
Zhao, Ziyu, Irene Vercellino, Julian P. Whitelegge, Karim Maghlaoui, Wojciech Białek, Peter J. Nixon, and Leonid A Sazanov. “Cryo-EM Structures of Naturally Occurring Dimeric Photosystem II Complexes Lacking the Mn4CaO5 Cluster.” Nature Communications. Springer Nature, 2026. https://doi.org/10.1038/s41467-026-75324-x.
Z. Zhao et al., “Cryo-EM structures of naturally occurring dimeric photosystem II complexes lacking the Mn4CaO5 cluster,” Nature Communications, vol. 17. Springer Nature, 2026.
Zhao Z, Vercellino I, Whitelegge JP, Maghlaoui K, Białek W, Nixon PJ, Sazanov LA. 2026. Cryo-EM structures of naturally occurring dimeric photosystem II complexes lacking the Mn4CaO5 cluster. Nature Communications. 17, 8433.
Zhao, Ziyu, et al. “Cryo-EM Structures of Naturally Occurring Dimeric Photosystem II Complexes Lacking the Mn4CaO5 Cluster.” Nature Communications, vol. 17, 8433, Springer Nature, 2026, doi:10.1038/s41467-026-75324-x.
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