One of the reasons for the high efficiency and selectivity of biological catalysts arise from their ability to control the pathways of substrates and products using protein channels, and by modulating the transport in the channels using the interaction with the protein residues and the water/hydrogen-bonding network. This process is clearly demonstrated in Photosystem II (PS II), where its light-driven water oxidation reaction catalyzed by the Mn4CaO5 cluster occurs deep inside the protein complex and thus requires the transport of two water molecules to and four protons from the metal center to the bulk water. Based on the recent advances in structural studies of PS II from X-ray crystallography and cryo-electron microscopy, in this review...
In photosystem II (PSII), photosynthetic water oxidation occurs at the tetramanganese–calcium cluste...
Photosystem II, the water oxidizing enzyme, altered the course of evolution by filling the atmospher...
AbstractWater is clearly important for the functioning of Photosystem II (PSII). Apart from being th...
One of the reasons for the high efficiency and selectivity of biological catalysts arise from their ...
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...
SummaryUsing the 2.9 Å resolution structure of the membrane-intrinsic protein-cofactor complex photo...
The molecular oxygen we breathe is produced from water-derived oxygen species bound to the Mn4CaO5 c...
The molecular oxygen we breathe is produced from water-derived oxygen species bound to the Mn4CaO5 c...
Oxygenic photosynthesis forms the basis of aerobic life on earth by converting light energy into bio...
The molecular oxygen we breathe is produced from water-derived oxygen species bound to the Mn4CaO5 c...
Recent high-resolution crystal structures of the water-oxidizing enzyme photosystem II (PSII) show t...
The influence of the environment on the functionality of the oxygen-evolving complex (OEC) of photos...
AbstractPhotosystem II complex (PSII) of thylakoid membranes uses light energy to oxidise extremely ...
In photosystem II (PSII), photosynthetic water oxidation occurs at the tetramanganese–calcium cluste...
Photosystem II, the water oxidizing enzyme, altered the course of evolution by filling the atmospher...
AbstractWater is clearly important for the functioning of Photosystem II (PSII). Apart from being th...
One of the reasons for the high efficiency and selectivity of biological catalysts arise from their ...
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...
SummaryUsing the 2.9 Å resolution structure of the membrane-intrinsic protein-cofactor complex photo...
The molecular oxygen we breathe is produced from water-derived oxygen species bound to the Mn4CaO5 c...
The molecular oxygen we breathe is produced from water-derived oxygen species bound to the Mn4CaO5 c...
Oxygenic photosynthesis forms the basis of aerobic life on earth by converting light energy into bio...
The molecular oxygen we breathe is produced from water-derived oxygen species bound to the Mn4CaO5 c...
Recent high-resolution crystal structures of the water-oxidizing enzyme photosystem II (PSII) show t...
The influence of the environment on the functionality of the oxygen-evolving complex (OEC) of photos...
AbstractPhotosystem II complex (PSII) of thylakoid membranes uses light energy to oxidise extremely ...
In photosystem II (PSII), photosynthetic water oxidation occurs at the tetramanganese–calcium cluste...
Photosystem II, the water oxidizing enzyme, altered the course of evolution by filling the atmospher...
AbstractWater is clearly important for the functioning of Photosystem II (PSII). Apart from being th...