AbstractDespite its central function in oxidative phosphorylation, the molecular mechanism of proton pumping respiratory complex I is still elusive. In recent years, considerable progress has been made towards understanding structure/function relationships in this very large and complicated membrane protein complex. Last year X-ray crystallographic analysis of bacterial and mitochondrial complex I provided important insights into its molecular architecture. Based on this evidence, here a hypothetical molecular mechanism for redox-driven proton pumping of complex I is proposed. According to this mechanism, two pump modules are driven by two conformational strokes that are generated by stabilization of the anionic forms of semiquinone and ubi...
Mitochondrial complex I couples NADH:ubiquinone oxidoreduction to proton pumping by an unknown mecha...
Respiratory complex I (NADH:quinone oxidoreductase) plays a central role in generating the proton el...
Abstract Respiratory complex I is a giant redox-driven proton pump, and central to energy production...
AbstractDespite its central function in oxidative phosphorylation, the molecular mechanism of proton...
AbstractA novel mechanism for proton/electron transfer is proposed for NADH-quinone oxidoreductase (...
AbstractComplex I is a key enzyme of the respiratory chain in many organisms. This multi-protein com...
Membrane bound respiratory complex I is the key enzyme in the respiratory chains of bacteria and mit...
AbstractThe modular evolutionary origin of NADH:ubiquinone oxidoreductase (complex I) provides usefu...
AbstractProton pumping NADH:ubiquinone oxidoreductase (complex I) is the largest and remains by far ...
AbstractNADH:ubiquinone oxidoreductase (complex I) is the largest and most complicated enzyme of aer...
Complex I functions as a redox-driven proton pump in aerobic respiratory chains. By reducing quinone...
Complex I converts oxidoreduction energy into a proton electrochemical gradient across the inner mit...
AbstractFunctional and structural data are reviewed which provide evidence that proton pumping in cy...
In the aerobic respiratory chains of many organisms, complex I functions as the first electron input...
Mitochondrial complex I, the largest and most complicated proton pump of the respiratory chain, link...
Mitochondrial complex I couples NADH:ubiquinone oxidoreduction to proton pumping by an unknown mecha...
Respiratory complex I (NADH:quinone oxidoreductase) plays a central role in generating the proton el...
Abstract Respiratory complex I is a giant redox-driven proton pump, and central to energy production...
AbstractDespite its central function in oxidative phosphorylation, the molecular mechanism of proton...
AbstractA novel mechanism for proton/electron transfer is proposed for NADH-quinone oxidoreductase (...
AbstractComplex I is a key enzyme of the respiratory chain in many organisms. This multi-protein com...
Membrane bound respiratory complex I is the key enzyme in the respiratory chains of bacteria and mit...
AbstractThe modular evolutionary origin of NADH:ubiquinone oxidoreductase (complex I) provides usefu...
AbstractProton pumping NADH:ubiquinone oxidoreductase (complex I) is the largest and remains by far ...
AbstractNADH:ubiquinone oxidoreductase (complex I) is the largest and most complicated enzyme of aer...
Complex I functions as a redox-driven proton pump in aerobic respiratory chains. By reducing quinone...
Complex I converts oxidoreduction energy into a proton electrochemical gradient across the inner mit...
AbstractFunctional and structural data are reviewed which provide evidence that proton pumping in cy...
In the aerobic respiratory chains of many organisms, complex I functions as the first electron input...
Mitochondrial complex I, the largest and most complicated proton pump of the respiratory chain, link...
Mitochondrial complex I couples NADH:ubiquinone oxidoreduction to proton pumping by an unknown mecha...
Respiratory complex I (NADH:quinone oxidoreductase) plays a central role in generating the proton el...
Abstract Respiratory complex I is a giant redox-driven proton pump, and central to energy production...