Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is driven by highly oxidizing ensemble of four Chl molecules, PD1, PD2, ChlD1 and ChlD2 called, P680. Excitation of one of the Chls in P680 leads to the primary charge separation, P680+Pheo-. Pheo- transfers electrons sequentially to the primary quinone acceptor QA and the secondary quinone acceptor QB. P680+ in turn extracts electrons from Mn4CaO5 cluster, a site for the water oxidation. There are two redox active tyrosines, TyrZ and TyrD, found in PSII. They are symmetrically located on the D1 and D2 central proteins. Only TyrZ acts as intermediate electron carrier between P680 and Mn4CaO5 cluster, while TyrD does not participate in the linear el...
The principles of natures own light-driven water splitting catalyst, Photosystem II (PSII), can in t...
The principles of natures own light-driven water splitting catalyst, Photosystem II (PSII), can in t...
AbstractWater oxidation at photosystem II Mn-cluster is mediated by the redox-active tyrosine YZ. We...
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...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
AbstractRedox-active tyrosine (Tyr) D is indirectly involved in controlling the primary electron tra...
Photosystem II is unique! It remains the only enzyme that can oxidize water using light as energy in...
The photosynthetic processes that lead to water oxidation involve an evolution in time from photon d...
The work conducted in this thesis aimed to elucidate the function of key components of the photosyst...
The principles of natures own light-driven water splitting catalyst, Photosystem II (PSII), can in t...
The principles of natures own light-driven water splitting catalyst, Photosystem II (PSII), can in t...
AbstractWater oxidation at photosystem II Mn-cluster is mediated by the redox-active tyrosine YZ. We...
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...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
Photosystem II (PS II) contains two redox-active tyrosine residues on the donor side at symmetrical ...
AbstractRedox-active tyrosine (Tyr) D is indirectly involved in controlling the primary electron tra...
Photosystem II is unique! It remains the only enzyme that can oxidize water using light as energy in...
The photosynthetic processes that lead to water oxidation involve an evolution in time from photon d...
The work conducted in this thesis aimed to elucidate the function of key components of the photosyst...
The principles of natures own light-driven water splitting catalyst, Photosystem II (PSII), can in t...
The principles of natures own light-driven water splitting catalyst, Photosystem II (PSII), can in t...
AbstractWater oxidation at photosystem II Mn-cluster is mediated by the redox-active tyrosine YZ. We...