AbstractFerredoxin and flavodoxin are soluble proteins which are reduced by the terminal electron acceptors of photosystem I. The kinetics of ferredoxin (flavodoxin) photoreduction are discussed in detail, together with the last steps of intramolecular photosystem I electron transfer which precede ferredoxin (flavodoxin) reduction. The present knowledge concerning the photosystem I docking site for ferredoxin and flavodoxin is described in the second part of the review
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
ABSTRACT: Biochemical and structural studies indicate that electrostatic and hydrophobic interaction...
10 pages, 4 figures, 6 tables.-- PMID: 15628849 [PubMed].-- Available online on Dec 4, 2004.Biochemi...
AbstractFerredoxin and flavodoxin are soluble proteins which are reduced by the terminal electron ac...
AbstractThe reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
The process of ferredoxin reduction by photosystem I has been extensively investigated by flash-abso...
AbstractThe formation of a transient complex between photosystem I and ferredoxin is involved in the...
protein interactions, X-ray structure Electron transfer (ET) reactions in systems involving proteins...
AbstractAn electrometrical technique was used to investigate electron transfer between the terminal ...
AbstractUnder iron-deficient conditions Flavodoxin (Fld) replaces Ferredoxin in Anabaena as electron...
AbstractThe PsaC subunit of photosystem I (PS I) binds two [4Fe-4S] clusters, FA and FB, functioning...
11 pages.-- PMID: 18177021 [PubMed].-- Printed version published Jan 29, 2008.Three surface hydropho...
AbstractFlavodoxin (Fld) replaces Ferredoxin (Fd) as electron carrier from Photosystem I (PSI) to Fe...
The reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of the pho...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
ABSTRACT: Biochemical and structural studies indicate that electrostatic and hydrophobic interaction...
10 pages, 4 figures, 6 tables.-- PMID: 15628849 [PubMed].-- Available online on Dec 4, 2004.Biochemi...
AbstractFerredoxin and flavodoxin are soluble proteins which are reduced by the terminal electron ac...
AbstractThe reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
The process of ferredoxin reduction by photosystem I has been extensively investigated by flash-abso...
AbstractThe formation of a transient complex between photosystem I and ferredoxin is involved in the...
protein interactions, X-ray structure Electron transfer (ET) reactions in systems involving proteins...
AbstractAn electrometrical technique was used to investigate electron transfer between the terminal ...
AbstractUnder iron-deficient conditions Flavodoxin (Fld) replaces Ferredoxin in Anabaena as electron...
AbstractThe PsaC subunit of photosystem I (PS I) binds two [4Fe-4S] clusters, FA and FB, functioning...
11 pages.-- PMID: 18177021 [PubMed].-- Printed version published Jan 29, 2008.Three surface hydropho...
AbstractFlavodoxin (Fld) replaces Ferredoxin (Fd) as electron carrier from Photosystem I (PSI) to Fe...
The reaction center of photosystem I (PSI) reduces soluble ferredoxin on the stromal side of the pho...
A covalent stoichiometric complex between photosystem I (PSI) and ferredoxin from the cyanobacterium...
ABSTRACT: Biochemical and structural studies indicate that electrostatic and hydrophobic interaction...
10 pages, 4 figures, 6 tables.-- PMID: 15628849 [PubMed].-- Available online on Dec 4, 2004.Biochemi...