Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidation of water to molecular oxygen. We have utilized bacterioferritin (BFR), an iron storage protein found in Escherichia coli, as a protein scaffold to build in PSII cofactors in a simpler in vitro model system. Previously, we have shown that the native heme in BFR can be replaced with the chlorophyll analog zinc-chlorin (ZnCe6) and that the intrinsic di-iron site can bind two manganese ions. Upon flash excitation of the ZnCe6 modified BFR, not only is the dinuclear manganese complex oxidized but also a tyrosine residue. There are seven tyrosine residues in each BFR monomeric subunit. We mutated the three tyrosine residues within electron tunnel...
Ferritins solubilize and detoxify the essential metal iron through formation of a ferric mineral wit...
Photosystem II is unique! It remains the only enzyme that can oxidize water using light as energy in...
Photosystem II (PSII) uses light energy to oxidise water and reduce quinone. The water oxidation sit...
Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidatio...
AbstractPhotosynthesis involves the conversion of light into chemical energy through a series of ele...
Photosynthesis involves the conversion of light into chemical energy through a series of electron tr...
Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize water. Rec...
<div><p>Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize wa...
AbstractThe photosynthetic reaction centre (RC) is central to the conversion of solar energy into ch...
At the heart of photosystem II is the reaction center, where solar energy is used to separate charge...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
AbstractPhotosystem II (PSII), the thylakoid membrane enzyme which uses sunlight to oxidize water to...
Porphyrins, for example heme and chlorophyll, are vital to biological processes such as respiration ...
Ferritins solubilize and detoxify the essential metal iron through formation of a ferric mineral wit...
The photosynthetic reaction centre (RC) is central to the conversion of solar energy into chemical e...
Ferritins solubilize and detoxify the essential metal iron through formation of a ferric mineral wit...
Photosystem II is unique! It remains the only enzyme that can oxidize water using light as energy in...
Photosystem II (PSII) uses light energy to oxidise water and reduce quinone. The water oxidation sit...
Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidatio...
AbstractPhotosynthesis involves the conversion of light into chemical energy through a series of ele...
Photosynthesis involves the conversion of light into chemical energy through a series of electron tr...
Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize water. Rec...
<div><p>Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize wa...
AbstractThe photosynthetic reaction centre (RC) is central to the conversion of solar energy into ch...
At the heart of photosystem II is the reaction center, where solar energy is used to separate charge...
Photosystem II is a unique enzyme which catalyzes light induced water oxidation. This process is dri...
AbstractPhotosystem II (PSII), the thylakoid membrane enzyme which uses sunlight to oxidize water to...
Porphyrins, for example heme and chlorophyll, are vital to biological processes such as respiration ...
Ferritins solubilize and detoxify the essential metal iron through formation of a ferric mineral wit...
The photosynthetic reaction centre (RC) is central to the conversion of solar energy into chemical e...
Ferritins solubilize and detoxify the essential metal iron through formation of a ferric mineral wit...
Photosystem II is unique! It remains the only enzyme that can oxidize water using light as energy in...
Photosystem II (PSII) uses light energy to oxidise water and reduce quinone. The water oxidation sit...