Photosystem II (PSII) catalyzes the splitting of water, releasing protons and dioxygen. Its highly conserved subunit PsbO extends from the oxygen-evolving center (OEC) into the thylakoid lumen and stabilizes the catalytic Mn4CaO5 cluster. The high degree of conservation of accessible negatively charged surface residues in PsbO suggests additional functions, as local pH buffer or by affecting the flow of protons. For this discussion, we provide an experimental basis, through the determination of pKa values of water-accessible aspartate and glutamate side-chain carboxylate groups by means of NMR. Their distribution is strikingly uneven, with high pKa values around 4.9 clustered on the luminal PsbO side and values below 3.5 on the side facing ...
AbstractEarlier studies have proposed that low pH causes state transitions in spinach thylakoid memb...
The biochemical, biophysical, and physiological properties of the PsbS protein were studied in relat...
PsbO is an extrinsic subunit of photosystem II engaged in complex binding interactions within photos...
Photosystem II (PSII) catalyzes the splitting of water, releasing protons and dioxygen. Its highly c...
Photosystem II (PSII) catalyzes the splitting of water, releasing protons and dioxygen. Its highly c...
AbstractThe hypothesis presented here for proton transfer away from the water oxidation complex of P...
Proton-transfer proteins are often exposed to the bulk clusters of carboxylate groups that might bin...
Under strong sunlight, plants avoid photooxidation by quenching the excess absorbed energy. Quenchin...
AbstractOxidation of water molecules in the photosystem II (PSII) protein complex proceeds at the ma...
Oxidation of water molecules in the photosystem II (PSII) protein complex proceeds at the manganese–...
Plants need to protect themselves from excess light, which causes photo-oxidative damage and lowers ...
AbstractThe PsbP protein is an extrinsic subunit of photosystem II (PSII) that is essential for phot...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
The mechanism of natural photosynthesis involves the use of solar energy to produce O2 we breathe an...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
AbstractEarlier studies have proposed that low pH causes state transitions in spinach thylakoid memb...
The biochemical, biophysical, and physiological properties of the PsbS protein were studied in relat...
PsbO is an extrinsic subunit of photosystem II engaged in complex binding interactions within photos...
Photosystem II (PSII) catalyzes the splitting of water, releasing protons and dioxygen. Its highly c...
Photosystem II (PSII) catalyzes the splitting of water, releasing protons and dioxygen. Its highly c...
AbstractThe hypothesis presented here for proton transfer away from the water oxidation complex of P...
Proton-transfer proteins are often exposed to the bulk clusters of carboxylate groups that might bin...
Under strong sunlight, plants avoid photooxidation by quenching the excess absorbed energy. Quenchin...
AbstractOxidation of water molecules in the photosystem II (PSII) protein complex proceeds at the ma...
Oxidation of water molecules in the photosystem II (PSII) protein complex proceeds at the manganese–...
Plants need to protect themselves from excess light, which causes photo-oxidative damage and lowers ...
AbstractThe PsbP protein is an extrinsic subunit of photosystem II (PSII) that is essential for phot...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
The mechanism of natural photosynthesis involves the use of solar energy to produce O2 we breathe an...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
AbstractEarlier studies have proposed that low pH causes state transitions in spinach thylakoid memb...
The biochemical, biophysical, and physiological properties of the PsbS protein were studied in relat...
PsbO is an extrinsic subunit of photosystem II engaged in complex binding interactions within photos...