AbstractProtein domain movement of the Rieske iron–sulfur protein has been speculated to play an essential role in the bifurcated oxidation of ubiquinol catalyzed by the cytochrome bc1 complex. To better understand the electron transfer mechanism of the bifurcated ubiquinol oxidation at Qp site, we fixed the head domain of ISP at the cyt c1 position by creating an intersubunit disulfide bond between two genetically engineered cysteine residues: one at position 141 of ISP and the other at position 180 of the cyt c1 [S141C(ISP)/G180C(cyt c1)]. The formation of a disulfide bond between ISP and cyt c1 in this mutant complex is confirmed by SDS-PAGE and Western blot. In this mutant complex, the disulfide bond formation is concurrent with the los...
AbstractThe effect of molecular oxygen on the electron transfer activity of the cytochrome bc1 compl...
AbstractCrystallographic structures of the mitochondrial ubiquinol/cytochrome c oxidoreductase (cyto...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...
AbstractThe key step of the “protonmotive Q-cycle” mechanism for cytochrome bc1 complex is the bifur...
AbstractIntensive biochemical, biophysical and structural studies of the cytochrome (cyt) bc1 comple...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
AbstractThe modified Q cycle mechanism accounts for the proton and charge translocation stoichiometr...
AbstractThe crystal structure of the cytochrome bc1 complex (ubiquinol-cytochrome c reductase) from ...
AbstractWe have changed nine conserved aromatic amino acids by site-directed mutagenesis of the clon...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractEarly structures of the cytochrome bc1 complex revealed heterogeneity in the position of the...
ABSTRACT: Native structures of ubihydroquinone:cytochrome c oxidoreductase (bc1 complex) from differ...
AbstractSince available structures of native bc1 complexes show a vacant Qo-site, occupancy by subst...
Cytochrome c_{1} of Rhodobacter (Rba.) species provides a series of mutants which change barriers fo...
AbstractA triad of tyrosine residues (Y152–154) in the cytochrome c1 subunit (C1) of the Rhodobacter...
AbstractThe effect of molecular oxygen on the electron transfer activity of the cytochrome bc1 compl...
AbstractCrystallographic structures of the mitochondrial ubiquinol/cytochrome c oxidoreductase (cyto...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...
AbstractThe key step of the “protonmotive Q-cycle” mechanism for cytochrome bc1 complex is the bifur...
AbstractIntensive biochemical, biophysical and structural studies of the cytochrome (cyt) bc1 comple...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
AbstractThe modified Q cycle mechanism accounts for the proton and charge translocation stoichiometr...
AbstractThe crystal structure of the cytochrome bc1 complex (ubiquinol-cytochrome c reductase) from ...
AbstractWe have changed nine conserved aromatic amino acids by site-directed mutagenesis of the clon...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractEarly structures of the cytochrome bc1 complex revealed heterogeneity in the position of the...
ABSTRACT: Native structures of ubihydroquinone:cytochrome c oxidoreductase (bc1 complex) from differ...
AbstractSince available structures of native bc1 complexes show a vacant Qo-site, occupancy by subst...
Cytochrome c_{1} of Rhodobacter (Rba.) species provides a series of mutants which change barriers fo...
AbstractA triad of tyrosine residues (Y152–154) in the cytochrome c1 subunit (C1) of the Rhodobacter...
AbstractThe effect of molecular oxygen on the electron transfer activity of the cytochrome bc1 compl...
AbstractCrystallographic structures of the mitochondrial ubiquinol/cytochrome c oxidoreductase (cyto...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...