AbstractThe electron transfer reactions from low-potential cytochrome c-551, high-potential iron-sulfur protein (HiPIP) and cytochrome c′ to the photosynthetic reaction center mutationally devoid of the bound cytochrome subunit in the C244 mutant of the purple bacterium Rubrivivax gelatinosus were investigated using time-resolved optical spectroscopy. Cytochrome c-551 was the best electron donor. Both HiPIP and low-potential cytochrome c-551 can also react with the bound cytochrome subunit, but in this case HiPIP appeared to be more efficient than cytochrome c-551. Identification of soluble immediate electron donors to the bacteriochlorophyll dimer indicates that in Rvi. gelatinosus the bound cytochrome subunit is not essential for photosyn...
AbstractThe purple photosynthetic bacterium Rubrivivax gelatinosus has, at least, four periplasmic e...
AbstractWe studied the regulation mechanism of electron donations from menaquinol:cytochrome c oxido...
We spectroscopically resolved the reduced state of the primary electron acceptor of Photosystem I, A...
AbstractThe electron transfer reactions from low-potential cytochrome c-551, high-potential iron-sul...
AbstractDeletion of two of the major electron carriers, the reaction center-bound tetrahemic cytochr...
AbstractA mutant lacking the reaction center-bound cytochrome subunit was constructed in a purple ph...
AbstractElectron transfer from soluble cytochromes c and c2 to the photo-oxidized bacteriochlorophyl...
Bacterium Rhodopseudomonas viridis has four c-type cytochromes integrated to a single protein subuni...
AbstractThe cytochrome subunit bound to the photosynthetic reaction center (RC) complex in Rhodovulu...
AbstractHigh potential iron-sulfur protein (HiPIP), a small soluble redox protein, has been shown to...
AbstractThe functional role of the High Potential Iron-sulfur Protein (HiPIP) from the photosyntheti...
International audienceA detailed analysis of the periplasmic electron carriers of the photosynthetic...
AbstractThe capability of high potential iron–sulfur proteins (HiPIPs) and soluble cytochromes to sh...
AbstractA photoactive reaction center complex was isolated from a thermophilic green sulfur bacteriu...
The structure of the photosynthetic reaction center (RC) from Rhodopseudomonas viridis is known to h...
AbstractThe purple photosynthetic bacterium Rubrivivax gelatinosus has, at least, four periplasmic e...
AbstractWe studied the regulation mechanism of electron donations from menaquinol:cytochrome c oxido...
We spectroscopically resolved the reduced state of the primary electron acceptor of Photosystem I, A...
AbstractThe electron transfer reactions from low-potential cytochrome c-551, high-potential iron-sul...
AbstractDeletion of two of the major electron carriers, the reaction center-bound tetrahemic cytochr...
AbstractA mutant lacking the reaction center-bound cytochrome subunit was constructed in a purple ph...
AbstractElectron transfer from soluble cytochromes c and c2 to the photo-oxidized bacteriochlorophyl...
Bacterium Rhodopseudomonas viridis has four c-type cytochromes integrated to a single protein subuni...
AbstractThe cytochrome subunit bound to the photosynthetic reaction center (RC) complex in Rhodovulu...
AbstractHigh potential iron-sulfur protein (HiPIP), a small soluble redox protein, has been shown to...
AbstractThe functional role of the High Potential Iron-sulfur Protein (HiPIP) from the photosyntheti...
International audienceA detailed analysis of the periplasmic electron carriers of the photosynthetic...
AbstractThe capability of high potential iron–sulfur proteins (HiPIPs) and soluble cytochromes to sh...
AbstractA photoactive reaction center complex was isolated from a thermophilic green sulfur bacteriu...
The structure of the photosynthetic reaction center (RC) from Rhodopseudomonas viridis is known to h...
AbstractThe purple photosynthetic bacterium Rubrivivax gelatinosus has, at least, four periplasmic e...
AbstractWe studied the regulation mechanism of electron donations from menaquinol:cytochrome c oxido...
We spectroscopically resolved the reduced state of the primary electron acceptor of Photosystem I, A...