AbstractPhotosynthetic O2 production from water is catalyzed by a cluster of four manganese ions and a tyrosine residue that comprise the redox-active components of the water-oxidizing complex (WOC) of photosystem II (PSII) in all known oxygenic phototrophs. Knowledge of the oxidation states is indispensable for understanding the fundamental principles of catalysis by PSII and the catalytic mechanism of the WOC. Previous spectroscopic studies and redox titrations predicted the net oxidation state of the S0 state to be (MnIII)3MnIV. We have refined a previously developed photoassembly procedure that directly determines the number of oxidizing equivalents needed to assemble the Mn4Ca core of WOC during photoassembly, starting from free MnII a...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Photosynthetic O₂ production from water is catalyzed by a cluster of four manganese ions and a tyros...
AbstractPhotosynthetic O2 production from water is catalyzed by a cluster of four manganese ions and...
A frequent challenge when dealing with multinuclear transition metal clusters in biology is to deter...
The unique manganese–calcium catalyst in photosystem II (PSII) is the natural paragon for efficient ...
All cyanobacteria, algae, and plants use a similar water-oxidizing catalyst for water oxidation. Thi...
Photosystem II (PS II), found in oxygenic photosynthetic organisms, catalyses the most energetically...
AbstractResults from a variety of experimental techniques which have been used to define the oxidati...
Results from a variety of experimental techniques which have been used to define the oxidation level...
Photosystem II catalyzes the photosynthetic oxidation of water to O 2. The structural and functional...
Sunlight is a clean and renewable source of energy and could be the ultimate way to solve the curren...
Sunlight is a clean and renewable source of energy and could be the ultimate way to solve the curren...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O-2 of Earth atmos...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Photosynthetic O₂ production from water is catalyzed by a cluster of four manganese ions and a tyros...
AbstractPhotosynthetic O2 production from water is catalyzed by a cluster of four manganese ions and...
A frequent challenge when dealing with multinuclear transition metal clusters in biology is to deter...
The unique manganese–calcium catalyst in photosystem II (PSII) is the natural paragon for efficient ...
All cyanobacteria, algae, and plants use a similar water-oxidizing catalyst for water oxidation. Thi...
Photosystem II (PS II), found in oxygenic photosynthetic organisms, catalyses the most energetically...
AbstractResults from a variety of experimental techniques which have been used to define the oxidati...
Results from a variety of experimental techniques which have been used to define the oxidation level...
Photosystem II catalyzes the photosynthetic oxidation of water to O 2. The structural and functional...
Sunlight is a clean and renewable source of energy and could be the ultimate way to solve the curren...
Sunlight is a clean and renewable source of energy and could be the ultimate way to solve the curren...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O-2 of Earth atmos...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...