AbstractThe dimeric cytochrome bc1 complex catalyzes the oxidation–reduction of quinol and quinone at sites located in opposite sides of the membrane in which it resides. We review the kinetics of electron transfer and inhibitor binding that reveal functional interactions between the quinol oxidation site at center P and quinone reduction site at center N in opposite monomers in conjunction with electron equilibration between the cytochrome b subunits of the dimer. A model for the mechanism of the bc1 complex has emerged from these studies in which binding of ligands that mimic semiquinone at center N regulates half-of-the-sites reactivity at center P and binding of ligands that mimic catalytically competent binding of ubiquinol at center P...
AbstractThe cytochrome bc1 complex (commonly called Complex III) is the central enzyme of respirator...
AbstractWe studied the cytochrome bc1 complex (hereafter bc) by flash excitation of Rhodobacter caps...
AbstractThe modified Q cycle mechanism accounts for the proton and charge translocation stoichiometr...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...
AbstractEnergy transduction in the cytochrome bc1 complex is achieved by catalyzing opposite oxido-r...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractA refinement of the protonmotive Q cycle mechanism is proposed in which oxidation of ubiquin...
AbstractThe ubihydroquinone: cytochrome c oxidoreductase, or cytochrome bc1, is a central component ...
AbstractThe two spatially distant quinone-binding sites of the ubihydroquinone: cytochrome c oxidore...
AbstractElectronic connection between Qo and Qi quinone catalytic sites of dimeric cytochrome bc1 is...
AbstractA refinement of the protonmotive Q cycle mechanism is proposed in which oxidation of ubiquin...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractThe quinone chemistry that gives rise to the rather unusual strict bifurcation of electron t...
AbstractAspects of the crystal structures of the hetero-oligomeric cytochrome bc1 and b6f (“bc”) com...
AbstractThe cytochrome bc1 complex (commonly called Complex III) is the central enzyme of respirator...
AbstractWe studied the cytochrome bc1 complex (hereafter bc) by flash excitation of Rhodobacter caps...
AbstractThe modified Q cycle mechanism accounts for the proton and charge translocation stoichiometr...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...
AbstractEnergy transduction in the cytochrome bc1 complex is achieved by catalyzing opposite oxido-r...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractA refinement of the protonmotive Q cycle mechanism is proposed in which oxidation of ubiquin...
AbstractThe ubihydroquinone: cytochrome c oxidoreductase, or cytochrome bc1, is a central component ...
AbstractThe two spatially distant quinone-binding sites of the ubihydroquinone: cytochrome c oxidore...
AbstractElectronic connection between Qo and Qi quinone catalytic sites of dimeric cytochrome bc1 is...
AbstractA refinement of the protonmotive Q cycle mechanism is proposed in which oxidation of ubiquin...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractThe quinone chemistry that gives rise to the rather unusual strict bifurcation of electron t...
AbstractAspects of the crystal structures of the hetero-oligomeric cytochrome bc1 and b6f (“bc”) com...
AbstractThe cytochrome bc1 complex (commonly called Complex III) is the central enzyme of respirator...
AbstractWe studied the cytochrome bc1 complex (hereafter bc) by flash excitation of Rhodobacter caps...
AbstractThe modified Q cycle mechanism accounts for the proton and charge translocation stoichiometr...