AbstractThe unique bifurcation of electron flow at the ubihydroquinone-oxidation center of the cytochrome bc1 complex is the energy-conserving reaction of the protonmotive Q-cycle and is prerequisite to vectorial proton translocation. The widely accepted Q-cycle reaction scheme describes the overall electron and proton pathways, but does not address the detailed chemistry of this central step. Based on a model of the ubihydroquinone-oxidation pocket containing two ubiquinone molecules in a stacked configuration, a detailed model for the reactions during steady-state catalysis is proposed. In this proton-gated charge-transfer mechanism the reaction is controlled by the deprotonation of the substrate ubihydroquinone
AbstractCytochrome bc1-complexes of animals and bacteria (hereafter bc1), as well as related cytochr...
AbstractUbiquinol:cytochrome c oxidoreductase, bc1 complex, is the enzyme in the respiratory chain o...
AbstractThe essential reaction in the widely accepted protonmotive Q-cycle mechanism of the bc1 comp...
AbstractThe overall electron- and proton-pathways within the cytochrome-bc1 complex are described by...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
Abstract1. Recent results suggest that the major flux is carried by a monomeric function, not by an ...
AbstractThe cytochrome bc1 complex catalyzes electron transfer from ubiquinol to cytochrome c by a p...
AbstractThe emerging X-ray structures of the cytochrome bc1 complexes from bovine and chicken heart ...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractThe cytochrome bc1 complex catalyzes electron transfer from ubiquinol to cytochrome c by a p...
AbstractThe quinone chemistry that gives rise to the rather unusual strict bifurcation of electron t...
The cytochrome bc1 complexes are proton-translocating, dimeric membrane ubiquinol:cytochrome c oxido...
The cytochrome bc1 complex catalyzes electron transfer from ubiquinol to cytochrome c by a protonmot...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
AbstractCytochrome bc1-complexes of animals and bacteria (hereafter bc1), as well as related cytochr...
AbstractUbiquinol:cytochrome c oxidoreductase, bc1 complex, is the enzyme in the respiratory chain o...
AbstractThe essential reaction in the widely accepted protonmotive Q-cycle mechanism of the bc1 comp...
AbstractThe overall electron- and proton-pathways within the cytochrome-bc1 complex are described by...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
Abstract1. Recent results suggest that the major flux is carried by a monomeric function, not by an ...
AbstractThe cytochrome bc1 complex catalyzes electron transfer from ubiquinol to cytochrome c by a p...
AbstractThe emerging X-ray structures of the cytochrome bc1 complexes from bovine and chicken heart ...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
AbstractThe cytochrome bc1 complex catalyzes electron transfer from ubiquinol to cytochrome c by a p...
AbstractThe quinone chemistry that gives rise to the rather unusual strict bifurcation of electron t...
The cytochrome bc1 complexes are proton-translocating, dimeric membrane ubiquinol:cytochrome c oxido...
The cytochrome bc1 complex catalyzes electron transfer from ubiquinol to cytochrome c by a protonmot...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
AbstractCytochrome bc1-complexes of animals and bacteria (hereafter bc1), as well as related cytochr...
AbstractUbiquinol:cytochrome c oxidoreductase, bc1 complex, is the enzyme in the respiratory chain o...
AbstractThe essential reaction in the widely accepted protonmotive Q-cycle mechanism of the bc1 comp...