AbstractPhotosystem II (PSII) of green plants and cyanobacteria uses energy of light to oxidize water and to produce oxygen. The available estimates of the oxidizing potential of P680 +, the primary donor of PSII, yield value of about 1.15 V. Two main factors are suggested to add up and engender this high oxidizing potential, namely: (1) the electrostatic influence dominated by Arg-181 of the D2 subunit which elevates the oxidizing potential of P680 + up to 1 V, some 0.1 V above the Em value of a hydrogen-bonded chlorophyll a; and (2) the dynamic component of 0.10–0.15 V due to the experimentally demonstrated retarded protonic relaxation at the P680 site
AbstractOxygen evolution and proton release of crystallised photosystem II core complexes isolated f...
Kruse O. Light-induced short-term adaptation mechanisms under redox control in the PSII-LHCII superc...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...
AbstractPhotosystem II (PSII) of green plants and cyanobacteria uses energy of light to oxidize wate...
AbstractDuring the four-stepped catalytic cycle of water oxidation by photosystemII (PSII) molecular...
AbstractPhotosysthetic cleavage of water molecules to molecular oxygen is a crucial process for all ...
AbstractPhotosystem II of green plants oxidizes water at an Mn centre and reduces bound plastoquinon...
"Laser flash spectroscopy of photosystem II" Photosystem II (PS II) of plants and cyanobacteria oxi...
The photosynthetic processes that lead to water oxidation involve an evolution in time from photon d...
Photosynthetic water oxidation to yield the oxygen of the atmosphere is of paramount biological and ...
The energetics of photosynthesis in plants have been re-analyzed in a framework that represents the ...
Given the unique problem of the extremely high potential of the oxidant P680+ that is required to ox...
Given the unique problem of the extremely high potential of the oxidant P680 that is required to oxi...
In the D1-D61N mutant, it was possible to resolve a clear lag phase prior to the appearance of O2, i...
The photosynthetic water oxidase is composed of 15 polypeptides which are grouped around two functio...
AbstractOxygen evolution and proton release of crystallised photosystem II core complexes isolated f...
Kruse O. Light-induced short-term adaptation mechanisms under redox control in the PSII-LHCII superc...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...
AbstractPhotosystem II (PSII) of green plants and cyanobacteria uses energy of light to oxidize wate...
AbstractDuring the four-stepped catalytic cycle of water oxidation by photosystemII (PSII) molecular...
AbstractPhotosysthetic cleavage of water molecules to molecular oxygen is a crucial process for all ...
AbstractPhotosystem II of green plants oxidizes water at an Mn centre and reduces bound plastoquinon...
"Laser flash spectroscopy of photosystem II" Photosystem II (PS II) of plants and cyanobacteria oxi...
The photosynthetic processes that lead to water oxidation involve an evolution in time from photon d...
Photosynthetic water oxidation to yield the oxygen of the atmosphere is of paramount biological and ...
The energetics of photosynthesis in plants have been re-analyzed in a framework that represents the ...
Given the unique problem of the extremely high potential of the oxidant P680+ that is required to ox...
Given the unique problem of the extremely high potential of the oxidant P680 that is required to oxi...
In the D1-D61N mutant, it was possible to resolve a clear lag phase prior to the appearance of O2, i...
The photosynthetic water oxidase is composed of 15 polypeptides which are grouped around two functio...
AbstractOxygen evolution and proton release of crystallised photosystem II core complexes isolated f...
Kruse O. Light-induced short-term adaptation mechanisms under redox control in the PSII-LHCII superc...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...