AbstractIntramolecular proton transfer of heme-copper oxidases is performed via the K- and the transmembrane D-channels. A carboxyl group conserved in a subgroup of heme-copper oxidases, located within the D-channel close to the binuclear center (=glutamic acid-286 in cytochrome bo3 from Escherichia coli) is essential for proton pumping. Upon electron transfer to the fully oxidized (FO) enzyme, this amino acid has been shown to undergo a cyanide-independent environmental change. The redox-induced environmental transition of glutamic acid-286 is preserved in the site-directed mutant Y288F, which has lost its CuB binding capacity. Furthermore, the mixed-valence (MV) redox state of cytochrome bo3 (in which CuB and high-spin heme are reduced, w...
AbstractThe respiratory heme-copper oxidases catalyze reduction of O2 to H2O, linking this process t...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
International audienceBiological electron transfer (eT) between redox-active cofactors is thought to...
AbstractIntramolecular proton transfer of heme-copper oxidases is performed via the K- and the trans...
In the last few years, evidence has accumulated supporting the applicability of the cooperative mode...
Heme-copper oxidases are transmembrane proteins that are found in aerobic and anaerobic respiratory ...
AbstractCytochrome cbb3 is a distinct member of the superfamily of respiratory heme-copper oxidases,...
AbstractWe have examined the temperature dependence of the intramolecular electron transfer (ET) bet...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production duri...
Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production duri...
The proton translocation mechanism of the Escherichia coli cytochrome bo(3) complex is intimately ti...
AbstractIn this report we describe the activation volumes associated with the heme–heme electron tra...
AbstractThe haem-copper oxidases comprise a large family of enzymes that is widespread among aerobic...
The recent X-ray structure of the cytochrome bd respiratory oxygen reductase showed that two of the ...
AbstractThe respiratory heme-copper oxidases catalyze reduction of O2 to H2O, linking this process t...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
International audienceBiological electron transfer (eT) between redox-active cofactors is thought to...
AbstractIntramolecular proton transfer of heme-copper oxidases is performed via the K- and the trans...
In the last few years, evidence has accumulated supporting the applicability of the cooperative mode...
Heme-copper oxidases are transmembrane proteins that are found in aerobic and anaerobic respiratory ...
AbstractCytochrome cbb3 is a distinct member of the superfamily of respiratory heme-copper oxidases,...
AbstractWe have examined the temperature dependence of the intramolecular electron transfer (ET) bet...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production duri...
Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production duri...
The proton translocation mechanism of the Escherichia coli cytochrome bo(3) complex is intimately ti...
AbstractIn this report we describe the activation volumes associated with the heme–heme electron tra...
AbstractThe haem-copper oxidases comprise a large family of enzymes that is widespread among aerobic...
The recent X-ray structure of the cytochrome bd respiratory oxygen reductase showed that two of the ...
AbstractThe respiratory heme-copper oxidases catalyze reduction of O2 to H2O, linking this process t...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
International audienceBiological electron transfer (eT) between redox-active cofactors is thought to...