AbstractThe protonization pattern of the endogenous donor component D1 which feeds electrons directly into chl-a+II has been analyzed in Tris-washed inside-out thylakoids with the aid of appropriate pH-indicators. It was found that under repetitive flash excitation the amount of protons released is proportional to the extent of D1-oxidation, depending on the time between the flashes. The kinetics of D1-oxidation (being practically the same as in normal Tris-washed chloroplasts) are faster than the proton release by two orders of magnitude. The results lead to the conclusion that D1 is protonized in the reduced state with pK(Dox1) < 5 and becomes deprotonized in the oxidized state with pK(Dred1) ≳ 8. The proton release is kinetically limited...
AbstractProton and electron transfer at the reducing side of photosystem II of green plants was stud...
This thesis deals mainly with the analysis and interpretation of the flash-induced electrochromic ab...
AbstractPhotosystem II (PSII) of green plants and cyanobacteria uses energy of light to oxidize wate...
AbstractThe protonization pattern of the endogenous donor component D1 which feeds electrons directl...
AbstractDuring the four-stepped catalytic cycle of water oxidation by photosystemII (PSII) molecular...
AbstractPhotosystem II of green plants oxidizes water at an Mn centre and reduces bound plastoquinon...
AbstractChloride depletion blocks the normal four-step progress of photosynthetic water oxidation. W...
AbstractProton and electron transfer at the reducing side of photosystem II of green plants was stud...
AbstractChloride depletion blocks the normal four-step progress of photosynthetic water oxidation. W...
We measured flash-induced rapid proton release into the lumen of thylakoids. We found that the proto...
We studied the kinetics of flash-induced proton uptake at the reducing site of Photosystem II with C...
AbstractWe measured flash-induced rapid proton release into the lumen of thylakoids. We found that t...
The primary electron donor P-680 of the Photosystem-II reaction center was photoxidized by a short f...
AbstractAccording to the concept of the Q-cycle, the H+/e− ratio of the electron transport chain of ...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...
AbstractProton and electron transfer at the reducing side of photosystem II of green plants was stud...
This thesis deals mainly with the analysis and interpretation of the flash-induced electrochromic ab...
AbstractPhotosystem II (PSII) of green plants and cyanobacteria uses energy of light to oxidize wate...
AbstractThe protonization pattern of the endogenous donor component D1 which feeds electrons directl...
AbstractDuring the four-stepped catalytic cycle of water oxidation by photosystemII (PSII) molecular...
AbstractPhotosystem II of green plants oxidizes water at an Mn centre and reduces bound plastoquinon...
AbstractChloride depletion blocks the normal four-step progress of photosynthetic water oxidation. W...
AbstractProton and electron transfer at the reducing side of photosystem II of green plants was stud...
AbstractChloride depletion blocks the normal four-step progress of photosynthetic water oxidation. W...
We measured flash-induced rapid proton release into the lumen of thylakoids. We found that the proto...
We studied the kinetics of flash-induced proton uptake at the reducing site of Photosystem II with C...
AbstractWe measured flash-induced rapid proton release into the lumen of thylakoids. We found that t...
The primary electron donor P-680 of the Photosystem-II reaction center was photoxidized by a short f...
AbstractAccording to the concept of the Q-cycle, the H+/e− ratio of the electron transport chain of ...
AbstractFour quanta of light, absorbed by Photosystem II (PS II), drive the catalytic center of oxyg...
AbstractProton and electron transfer at the reducing side of photosystem II of green plants was stud...
This thesis deals mainly with the analysis and interpretation of the flash-induced electrochromic ab...
AbstractPhotosystem II (PSII) of green plants and cyanobacteria uses energy of light to oxidize wate...