Describing dynamics of proton transfers in proteins is challenging, but crucial for understanding processes which use them for biological functions. In cytochrome bc(1), one of the key enzymes of respiration or photosynthesis, proton transfers engage in oxidation of quinol (QH(2)) and reduction of quinone (Q) taking place at two distinct catalytic sites. Here we evaluated by site-directed mutagenesis the contribution of Lys251/Asp252 pair (bacterial numbering) in electron transfers and associated with it proton uptake to the quinone reduction site (Q(i) site). We showed that the absence of protonable group at position 251 or 252 significantly changes the equilibrium levels of electronic reactions including the Q(i)-site mediated oxidation o...
Complex I functions as a redox-driven proton pump in aerobic respiratory chains. By reducing quinone...
AbstractThe focus of this minireview is to discuss the state of knowledge of the pathways and rates ...
Respiratory complex I in mitochondria and bacteria catalyzes the transfer of electrons from NADH to ...
Describing dynamics of proton transfers in proteins is challenging, but crucial for understanding pr...
AbstractDescribing dynamics of proton transfers in proteins is challenging, but crucial for understa...
Describing dynamics of proton transfers in proteins is challenging, but crucial for understanding pr...
The cytochrome (cyt) bc(1) complex is an integral component of the respiratory electron transfer cha...
AbstractIn Rhodobacter sphaeroides, transfer of the first electron in quinol oxidation by the bc1 co...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
The cytochrome (cyt) bc 1 complex is an integral component of the respiratory electron transfer chai...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
AbstractThe bacterial reaction center couples light-induced electron transfer to proton pumping acro...
Respiratory complex I performs the reduction of quinone (Q) to quinol (QH2) and pumps protons across...
AbstractCytochrome (cyt) bc1 complex, which is an integral part of the respiratory chain and related...
The cytochrome bc1 complex and its family members play a central role in biological energy transduct...
Complex I functions as a redox-driven proton pump in aerobic respiratory chains. By reducing quinone...
AbstractThe focus of this minireview is to discuss the state of knowledge of the pathways and rates ...
Respiratory complex I in mitochondria and bacteria catalyzes the transfer of electrons from NADH to ...
Describing dynamics of proton transfers in proteins is challenging, but crucial for understanding pr...
AbstractDescribing dynamics of proton transfers in proteins is challenging, but crucial for understa...
Describing dynamics of proton transfers in proteins is challenging, but crucial for understanding pr...
The cytochrome (cyt) bc(1) complex is an integral component of the respiratory electron transfer cha...
AbstractIn Rhodobacter sphaeroides, transfer of the first electron in quinol oxidation by the bc1 co...
AbstractThe Q-cycle mechanism of the bc1 complex explains how the electron transfer from ubihydroqui...
The cytochrome (cyt) bc 1 complex is an integral component of the respiratory electron transfer chai...
AbstractThe rate-limiting reaction of the bc1 complex from Rhodobacter sphaeroides is transfer of th...
AbstractThe bacterial reaction center couples light-induced electron transfer to proton pumping acro...
Respiratory complex I performs the reduction of quinone (Q) to quinol (QH2) and pumps protons across...
AbstractCytochrome (cyt) bc1 complex, which is an integral part of the respiratory chain and related...
The cytochrome bc1 complex and its family members play a central role in biological energy transduct...
Complex I functions as a redox-driven proton pump in aerobic respiratory chains. By reducing quinone...
AbstractThe focus of this minireview is to discuss the state of knowledge of the pathways and rates ...
Respiratory complex I in mitochondria and bacteria catalyzes the transfer of electrons from NADH to ...