AbstractUbiquinol:cytochrome c oxidoreductase, bc1 complex, is the enzyme in the respiratory chain of mitochondria responsible for the transfer reducing potential from ubiquinol to cytochrome c coupled to the movement of charge against the electrostatic potential across the mitochondrial inner membrane. The complex is also implicated in the generation of reactive oxygen species under certain conditions and is thus a contributor to cellular oxidative stress. Here, a biophysically detailed, thermodynamically consistent model of the bc1 complex for mammalian mitochondria is developed. The model incorporates the major redox centers near the Qo- and Qi-site of the enzyme, includes the pH-dependent redox reactions, accounts for the effect of the ...
*S Supporting Information ABSTRACT: Enzymes of the bc1 complex family power the biosphere through th...
Abstract1. Recent results suggest that the major flux is carried by a monomeric function, not by an ...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...
AbstractUbiquinol:cytochrome c oxidoreductase, bc1 complex, is the enzyme in the respiratory chain o...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
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...
AbstractA refinement of the protonmotive Q cycle mechanism is proposed in which oxidation of ubiquin...
AbstractApart from complex I (NADH:ubiquinone oxidoreductase) the mitochondrial cytochrome bc1 compl...
AbstractThe unique bifurcation of electron flow at the ubihydroquinone-oxidation center of the cytoc...
AbstractThe emerging X-ray structures of the cytochrome bc1 complexes from bovine and chicken heart ...
AbstractExperimental evidence is presented to demonstrate that cytochromes b of the mammalian cytoch...
The cytochrome bc1 complex is a central component of the electron-transfer respiratory chain in mito...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
*S Supporting Information ABSTRACT: Enzymes of the bc1 complex family power the biosphere through th...
Abstract1. Recent results suggest that the major flux is carried by a monomeric function, not by an ...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...
AbstractUbiquinol:cytochrome c oxidoreductase, bc1 complex, is the enzyme in the respiratory chain o...
AbstractThis review is focused on the mechanism of ubiquinol oxidation by the cytochrome bc1 complex...
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...
AbstractA refinement of the protonmotive Q cycle mechanism is proposed in which oxidation of ubiquin...
AbstractApart from complex I (NADH:ubiquinone oxidoreductase) the mitochondrial cytochrome bc1 compl...
AbstractThe unique bifurcation of electron flow at the ubihydroquinone-oxidation center of the cytoc...
AbstractThe emerging X-ray structures of the cytochrome bc1 complexes from bovine and chicken heart ...
AbstractExperimental evidence is presented to demonstrate that cytochromes b of the mammalian cytoch...
The cytochrome bc1 complex is a central component of the electron-transfer respiratory chain in mito...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
*S Supporting Information ABSTRACT: Enzymes of the bc1 complex family power the biosphere through th...
Abstract1. Recent results suggest that the major flux is carried by a monomeric function, not by an ...
AbstractRecent progress in understanding the Q-cycle mechanism of the bc1 complex is reviewed. The d...