Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production during aerobic respiration. They catalyze the reduction of the terminal electron acceptor, oxygen, and utilize the Gibbs free energy to transport protons across a membrane to generate a proton (ΔpH) and electrochemical gradient termed proton motive force (PMF), which provides the driving force for the adenosine triphosphate (ATP) synthesis. Excessive PMF is known to limit the turnover of HCOs, but the molecular mechanism of this regulatory feedback remains relatively unexplored. Here we present a single-enzyme study that reveals that cytochrome bo₃ from Escherichia coli, an HCO closely homologous to Complex IV in human mitochondria, can enter a r...
Heme-copper oxidases (HCOs) are the terminal enzymes of many aerobic respiratory chains, including t...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
AbstractThe cytochrome c oxidases (CcO), which are responsible for most O2 consumption in biology, a...
Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production duri...
The molecular mechanism of proton pumping by heme-copper oxidases (HCO) has intrigued the scientific...
Mitochondria metabolise almost all of the oxygen that we consume, reducing it to water by cytochrome...
AbstractThe haem-copper oxidases comprise a large family of enzymes that is widespread among aerobic...
AbstractThe heme-copper oxidases may be divided into three categories, A, B, and C, which include cy...
AbstractRecent time-resolved optical and electrometric experiments have provided a sequence of event...
AbstractSince its discovery [Nature 266 (1977) 271] [1], the function of cytochrome c oxidase (and o...
AbstractCellular respiration is driven by cytochrome c oxidase (CcO), which reduces oxygen to water ...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
Abstract Cytochrome c oxidase is a remarkable energy transducer that seems to work almost purely by ...
Abstract Cytochrome c oxidase is a remarkable energy transducer that seems to work almost purely by ...
Heme-copper oxidases (HCOs) are the terminal enzymes of many aerobic respiratory chains, including t...
Heme-copper oxidases (HCOs) are the terminal enzymes of many aerobic respiratory chains, including t...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
AbstractThe cytochrome c oxidases (CcO), which are responsible for most O2 consumption in biology, a...
Heme-copper oxidases (HCOs) are key enzymes in prokaryotes and eukaryotes for energy production duri...
The molecular mechanism of proton pumping by heme-copper oxidases (HCO) has intrigued the scientific...
Mitochondria metabolise almost all of the oxygen that we consume, reducing it to water by cytochrome...
AbstractThe haem-copper oxidases comprise a large family of enzymes that is widespread among aerobic...
AbstractThe heme-copper oxidases may be divided into three categories, A, B, and C, which include cy...
AbstractRecent time-resolved optical and electrometric experiments have provided a sequence of event...
AbstractSince its discovery [Nature 266 (1977) 271] [1], the function of cytochrome c oxidase (and o...
AbstractCellular respiration is driven by cytochrome c oxidase (CcO), which reduces oxygen to water ...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
Abstract Cytochrome c oxidase is a remarkable energy transducer that seems to work almost purely by ...
Abstract Cytochrome c oxidase is a remarkable energy transducer that seems to work almost purely by ...
Heme-copper oxidases (HCOs) are the terminal enzymes of many aerobic respiratory chains, including t...
Heme-copper oxidases (HCOs) are the terminal enzymes of many aerobic respiratory chains, including t...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
AbstractThe cytochrome c oxidases (CcO), which are responsible for most O2 consumption in biology, a...