Three rate-determining protein roles in photosynthetic O2-evolution addressed by time-resolved experiments on genetically modified photosystems

S Sarah M. Mäusle G Gianluca Parisse R Ricardo Assunção C Cristina De Santis P Philipp S. Simon D Daniele Narzi L Leonardo Guidoni (Dipartimento di Scienze Fisiche e Chimiche) R Richard J. Debus H Holger Dau

Abstract

Abstract Light-driven water splitting by plants, algae and cyanobacteria is pivotal for global bioenergetics and biomass formation. A manganese cluster bound to the photosystem II proteins catalyzes the complex reaction at high rate, but the rate-determining factors are insufficiently understood. Here we trace the oxygen-evolution transition by time-resolved polarography and infrared spectroscopy for cyanobacterial photosystems genetically modified at two strategic sites, complemented by computational chemistry. Our results highlight three rate-determining roles of the protein environment of the metal cluster: acceleration of proton-coupled electron transfer, acceleration of substrate-water insertion after O 2 -formation, and balancing of rate-determining enthalpic and entropic contributions. Whereas in general the substrate-water insertion step may be unresolvable in time-resolved experiments, here it likely becomes traceable because of deceleration by genetic modification. Our results may stimulate new time-resolved experiments on substrate-water insertion in photosynthesis, clarification of enthalpy-entropy compensation in enzyme catalysis, and knowledge-guided development of inorganic catalyst materials.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 28, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

S

Sarah M. Mäusle

G

Gianluca Parisse

R

Ricardo Assunção

C

Cristina De Santis

P

Philipp S. Simon

D

Daniele Narzi

L

Leonardo Guidoni

Dipartimento di Scienze Fisiche e Chimiche

R

Richard J. Debus

H

Holger Dau