AbstractThe reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of the photosynthetic membranes of cyanobacteria and chloroplasts. The X-ray structure of PSI from the cyanobacterium Synechococcus elongatus has been recently established at a 2.5 Å resolution [Nature 411 (2001) 909]. The kinetics of ferredoxin photoreduction has been studied in recent years in many mutants of the stromal subunits PsaC, PsaD and PsaE of PSI. We discuss the ferredoxin docking site of PSI using the X-ray structure and the effects brought by the PSI mutations to the ferredoxin affinity
International audiencePhotosynthetic [2Fe-2S] plant-type ferredoxins have a central role in electron...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
AbstractThe PsaC subunit of photosystem I (PS I) binds two [4Fe-4S] clusters, FA and FB, functioning...
AbstractThe reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of...
The reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of the pho...
AbstractFerredoxin and flavodoxin are soluble proteins which are reduced by the terminal electron ac...
The process of ferredoxin reduction by photosystem I has been extensively investigated by flash-abso...
The two [4Fe-4S] clusters FAand FB are the terminal electron acceptors of photosystem I (PSI) that a...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
The most crucial step in oxygenic Photosynthesis, which maintains our biosphere, is the light-driven...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
The photoreduction of the oxidized and the semiquinone form of flavodoxin from Synechocystis sp. PCC...
AbstractThe formation of a transient complex between photosystem I and ferredoxin is involved in the...
Fast turnover of ferredoxin/Fd reduction by photosystem-I/PSI requires that it dissociates rapidly a...
International audiencePhotosynthetic [2Fe-2S] plant-type ferredoxins have a central role in electron...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
AbstractThe PsaC subunit of photosystem I (PS I) binds two [4Fe-4S] clusters, FA and FB, functioning...
AbstractThe reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of...
The reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of the pho...
AbstractFerredoxin and flavodoxin are soluble proteins which are reduced by the terminal electron ac...
The process of ferredoxin reduction by photosystem I has been extensively investigated by flash-abso...
The two [4Fe-4S] clusters FAand FB are the terminal electron acceptors of photosystem I (PSI) that a...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
The most crucial step in oxygenic Photosynthesis, which maintains our biosphere, is the light-driven...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
The photoreduction of the oxidized and the semiquinone form of flavodoxin from Synechocystis sp. PCC...
AbstractThe formation of a transient complex between photosystem I and ferredoxin is involved in the...
Fast turnover of ferredoxin/Fd reduction by photosystem-I/PSI requires that it dissociates rapidly a...
International audiencePhotosynthetic [2Fe-2S] plant-type ferredoxins have a central role in electron...
Photosynthetic complex I enables cyclic electron flow around photosystem I, a regulatory mechanism f...
AbstractThe PsaC subunit of photosystem I (PS I) binds two [4Fe-4S] clusters, FA and FB, functioning...