Abstract
The stoichoimetry of vectorial H+ ejection coupled to electron flow through the cytochrome c oxidase (EC 1.9.3.1) of rat liver mitochondria was determined by a new rate/pulse method. This is a modification of the oxygen-pulse method. Electron flow through the oxidase is initiated by adding oxygen to suspensions of anaerobic mitochondria at a known and constant rate. Cytochrome c oxidase was examined directly or in combination with cytochrome c reductase (ubiquinol:ferricytochrome c oxidoreductase). In both cases the----H0+/2e- ratio was found to be constant during the time-course of oxygen reduction, and thus independent of delta pH. The stoichiometries observed were consistent with mechanistic stoichiometries of 2 and 6 for cytochrome c oxidase alone and cytochrome c oxidase together with cytochrome c reductase, respectively. The stoichiometry of cytochrome c reductase alone was also examined, by using ferricyanide in place of oxygen. The results obtained were consistent with the accepted mechanistic stoichiometry of 4 for this enzyme.
Original language | English |
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Pages (from-to) | 209-227 |
Number of pages | 0 |
Journal | Biochim Biophys Acta |
Volume | 894 |
Issue number | 2 |
DOIs | |
Publication status | Published - 19 Nov 1987 |
Keywords
- Animals
- Electron Transport
- Electron Transport Complex IV
- Ferricyanides
- Mitochondria
- Liver
- Osmolar Concentration
- Oxygen
- Protons
- Rats
- Ubiquinone