The catalytic cycle of numerous enzymes involves the coupling between proton transfer and electron transfer. Yet, the understanding of this coordinated transfer in biological systems remains limited, likely because its characterization relies on the controlled but experimentally challenging modifications of the free energy changes associated with either the electron or proton transfer. We have performed such a study here in Photosystem II. The driving force for electron transfer from TyrZ to P680•+ has been decreased by ∼80 meV by mutating the axial ligand of P680, and that for proton transfer upon oxidation of TyrZ by substituting a 3-fluorotyrosine (3F-TyrZ) for TyrZ. In Mn-depleted Photosystem II, the dependence upon pH of the oxidation ...
AbstractRedox-active tyrosine (Tyr) D is indirectly involved in controlling the primary electron tra...
AbstractThe photosynthetic processes that lead to water oxidation involve an evolution in time from ...
AbstractThe photosynthetic processes that lead to water oxidation involve an evolution in time from ...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
AbstractPhotosystem II (PSII), the thylakoid membrane enzyme which uses sunlight to oxidize water to...
The photosynthetic processes that lead to water oxidation involve an evolution in time from photon d...
ABSTRACT: In oxygen-evolving photosystem II (PSII), a tyrosine residue, D1Tyr161 (YZ), serves as the...
AbstractIn bioenergetic reactions, electrons are transferred long distances via a hopping mechanism....
AbstractA role for redox-active tyrosines has been demonstrated in many important biological process...
AbstractRedox-active tyrosine (Tyr) D is indirectly involved in controlling the primary electron tra...
AbstractThe photosynthetic processes that lead to water oxidation involve an evolution in time from ...
AbstractThe photosynthetic processes that lead to water oxidation involve an evolution in time from ...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
The redox-active tyrosines, YZ and YD, of Photosystem II are oxidized by P680+ to the neutral tyrosy...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
AbstractPhotosystem II (PSII), the thylakoid membrane enzyme which uses sunlight to oxidize water to...
The photosynthetic processes that lead to water oxidation involve an evolution in time from photon d...
ABSTRACT: In oxygen-evolving photosystem II (PSII), a tyrosine residue, D1Tyr161 (YZ), serves as the...
AbstractIn bioenergetic reactions, electrons are transferred long distances via a hopping mechanism....
AbstractA role for redox-active tyrosines has been demonstrated in many important biological process...
AbstractRedox-active tyrosine (Tyr) D is indirectly involved in controlling the primary electron tra...
AbstractThe photosynthetic processes that lead to water oxidation involve an evolution in time from ...
AbstractThe photosynthetic processes that lead to water oxidation involve an evolution in time from ...