Water-modulated conformational heterogeneity underlies multiple timescales of primary charge separation in photosystem II

M Matteo Capone A Alfy Benny (Department of Chemistry) G Gianluca Dell’Orletta (Department of Physical and Chemical Sciences, University of L’Aquila) G Gregory D. Scholes (Department of Chemistry) D Dimitrios A. Pantazis (Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, Mülheim an der Ruhr 45470, Germany) L Laura Zanetti-Polzi (Istituto Nanoscienze – CNR, S3 1 , via Campi 213/A, 41125 Modena,) I Isabella Daidone (Department of Physical and Chemical Sciences, University of L’Aquila)

Abstract

Abstract The kinetics of charge separation in Photosystem II, initiated within the reaction center, remain debated due to spectral congestion and overlapping timescales with energy transfer. Here, by means of atomistic molecular dynamics and quantum dynamics simulations, we present a kinetic model that attributes the observed multi-exponential behavior of the primary charge separation step to water-modulated conformational heterogeneity rather than to parallel pathways involving chemically distinct intermediate radical pairs. We propose that charge separation proceeds predominantly via the $${\,{{{\rm{Chl}}}}}_{{{{\rm{D1}}}}}^{+}{\,{{{\rm{Pheo}}}}}_{{{{\rm{D1}}}}}^{-}$$ Chl D1 + Pheo D1 − intermediate radical pair, with structural fluctuations of protein and solvent, specifically dynamic water channels near the oxygen-evolving complex, governing the multi-exponential kinetics. Analytical resolution of a kinetic scheme, which also incorporates pre-equilibration within the excited-state manifold of the reaction center, yields apparent lifetimes ( < 250 fs, 386 fs, 2.7 ps) comparable with experimental data. This model reconciles previous conflicting assignments and emphasizes the role of protein-solvent dynamics in shaping ultrafast charge separation.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 20, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

M

Matteo Capone

A

Alfy Benny

Department of Chemistry

G

Gianluca Dell’Orletta

Department of Physical and Chemical Sciences, University of L’Aquila

G

Gregory D. Scholes

Department of Chemistry

D

Dimitrios A. Pantazis

Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, Mülheim an der Ruhr 45470, Germany

L

Laura Zanetti-Polzi

Istituto Nanoscienze – CNR, S3 1 , via Campi 213/A, 41125 Modena,

I

Isabella Daidone

Department of Physical and Chemical Sciences, University of L’Aquila