AbstractThe S-state distribution in a dark-adapted photosystem II preparation, isolated from spinach chloroplasts, can be changed by pH. The period 4 oscillation of the oxygen-releasing reaction, as measured by UV absorbance changes, is shifted by one flash at pH 8.3. This is not due to the generation of the EPR signal II on the first flash, or to the loss of a positive charge to some other electron donor after the first flashes. It is concluded that at pH 8.3 the S1-state is reduced to S0. The half-time of the reduction of S1 to S0 is 45 s, and the reduction is reversed in the dark if the pH is readjusted to pH 6.0. The oxygen release at pH 8.3 is irreversibly slowed down to about 3.2 ms
AbstractAfter dark adaptation of oxygen-evolving photosystem (PS) II complexes, oscillatory absorpti...
"Laser flash spectroscopy of photosystem II" Photosystem II (PS II) of plants and cyanobacteria oxi...
AbstractThe decay kinetics of Y⋅Z have been detected using time-resolved EPR to obtain the half-time...
We studied the effect of low light intensity on Photosystem II (PSII) of thylakoid membranes isolate...
AbstractThe effect of low pH on the process of photoinhibition was studied in isolated spinach thyla...
Here we report an EPR signal that is induced by a pH jump to alkaline pH in the S3 state of the oxyg...
Flash induced oxygen evolution patterns of isolated PS II complexes from the cyanobacterium Synechoc...
AbstractThe pH dependence of oxygen evolution rates, 2,6-dichlorophenolindophenol (DCIP) reduction r...
AbstractThe oxygen-evolving complex of Photosystem II cycles through five oxidation states (S0–S4), ...
AbstractBy exposing dark-adapted Photosystem II core particles to a series of light flashes, we aime...
We have investigated the pH dependence for each individual redox transition in the S-cycle of the ox...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...
AbstractThe water-oxidizing complex of Photosystem II is an important target of ultraviolet-B (280–3...
AbstractAfter dark adaptation of oxygen-evolving PS II complexes, oscillatory absorption changes (st...
This Thesis presents the results of a study by electron paramagnetic resonance (EPR) and measurement...
AbstractAfter dark adaptation of oxygen-evolving photosystem (PS) II complexes, oscillatory absorpti...
"Laser flash spectroscopy of photosystem II" Photosystem II (PS II) of plants and cyanobacteria oxi...
AbstractThe decay kinetics of Y⋅Z have been detected using time-resolved EPR to obtain the half-time...
We studied the effect of low light intensity on Photosystem II (PSII) of thylakoid membranes isolate...
AbstractThe effect of low pH on the process of photoinhibition was studied in isolated spinach thyla...
Here we report an EPR signal that is induced by a pH jump to alkaline pH in the S3 state of the oxyg...
Flash induced oxygen evolution patterns of isolated PS II complexes from the cyanobacterium Synechoc...
AbstractThe pH dependence of oxygen evolution rates, 2,6-dichlorophenolindophenol (DCIP) reduction r...
AbstractThe oxygen-evolving complex of Photosystem II cycles through five oxidation states (S0–S4), ...
AbstractBy exposing dark-adapted Photosystem II core particles to a series of light flashes, we aime...
We have investigated the pH dependence for each individual redox transition in the S-cycle of the ox...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...
AbstractThe water-oxidizing complex of Photosystem II is an important target of ultraviolet-B (280–3...
AbstractAfter dark adaptation of oxygen-evolving PS II complexes, oscillatory absorption changes (st...
This Thesis presents the results of a study by electron paramagnetic resonance (EPR) and measurement...
AbstractAfter dark adaptation of oxygen-evolving photosystem (PS) II complexes, oscillatory absorpti...
"Laser flash spectroscopy of photosystem II" Photosystem II (PS II) of plants and cyanobacteria oxi...
AbstractThe decay kinetics of Y⋅Z have been detected using time-resolved EPR to obtain the half-time...