Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC) in Photosystem II (PS II). This multi-electron, multi-proton catalysis requires the transport of two water molecules to and four protons from the OEC. A high-resolution 1.89 Å structure obtained by averaging all the S states and refining the data of various time points during the S2 to S3 transition has provided better visualization of the potential pathways for substrate water insertion and proton release. Our results indicate that the O1 channel is the likely water intake pathway, and the Cl1 channel is the likely proton release pathway based on the structural rearrangements of water molecules and amino acid side chains along these channe...
AbstractThe present status of DFT studies on water oxidation in photosystem II is described. It is a...
Proton transfer using water bridges has been observed in bulk water, acid-base reactions, and severa...
Structural dynamics of water and its hydrogen-bonding networks play an important role in enzyme func...
Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC...
Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC...
Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC...
One of the reasons for the high efficiency and selectivity of biological catalysts arise from their ...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
The influence of the environment on the functionality of the oxygen-evolving complex (OEC) of photos...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
Light-driven oxidation of water into dioxygen, catalysed by the oxygen-evolving complex (OEC) in pho...
Light induced oxidation of water by photosystem II PS II in plants, algae and cyanobacteria has g...
Photosystem II (PSII) uses water as the terminal electron donor, producing oxygen in the Mn4CaO5 oxy...
The active site of photosynthetic water oxidation is the oxygen-evolving complex (OEC) in the photos...
Light-induced oxidation of water by photosystem II (PS II) in plants, algae and cyanobacteria has ge...
AbstractThe present status of DFT studies on water oxidation in photosystem II is described. It is a...
Proton transfer using water bridges has been observed in bulk water, acid-base reactions, and severa...
Structural dynamics of water and its hydrogen-bonding networks play an important role in enzyme func...
Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC...
Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC...
Light-driven oxidation of water to molecular oxygen is catalyzed by the oxygen-evolving complex (OEC...
One of the reasons for the high efficiency and selectivity of biological catalysts arise from their ...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
The influence of the environment on the functionality of the oxygen-evolving complex (OEC) of photos...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
Light-driven oxidation of water into dioxygen, catalysed by the oxygen-evolving complex (OEC) in pho...
Light induced oxidation of water by photosystem II PS II in plants, algae and cyanobacteria has g...
Photosystem II (PSII) uses water as the terminal electron donor, producing oxygen in the Mn4CaO5 oxy...
The active site of photosynthetic water oxidation is the oxygen-evolving complex (OEC) in the photos...
Light-induced oxidation of water by photosystem II (PS II) in plants, algae and cyanobacteria has ge...
AbstractThe present status of DFT studies on water oxidation in photosystem II is described. It is a...
Proton transfer using water bridges has been observed in bulk water, acid-base reactions, and severa...
Structural dynamics of water and its hydrogen-bonding networks play an important role in enzyme func...