The triphasic reduction of cytochrome b in the succinate-cytochrome c reductase
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Biochemistry,Biophysics
Reference9 articles.
1. Electron Transfer Chain and Oxidative Phosphorylation;King,1975
2. Dynamic Control on the Rate of the Reduction of the b Type Cytochromes in Submitochondrial Particles
3. Soluble Cytochrome b-c1 Complex and the Reconstitution of Succinate-Cytochrome c Reductase
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1. Domain movement of iron sulfur protein in cytochromebc1complex is facilitated by the electron transfer from cytochromebLtobH;FEBS Letters;2008-01-28
2. Energy Transduction in Mitochondrial Respiration by the Proton-Motive Q-Cycle Mechanism of the Cytochrome bc 1 Complex;Frontiers of Cellular Bioenergetics;1999
3. ENERGY TRANSDUCTION BY CYTOCHROME COMPLEXES IN MITOCHONDRIAL AND BACTERIAL RESPIRATION - THE ENZYMOLOGY OF COUPLING ELECTRON-TRANSFER REACTIONS TO TRANSMEMBRANE PROTON TRANSLOCATION;ANNU REV BIOCHEM;1994
4. The Protonmotive Q Cycle in Mitochondria and Bacteria;Critical Reviews in Biochemistry and Molecular Biology;1994-01
5. Reduction of the Q-pool by duroquinol via the two quinone-binding sites of the QH2: cytochrome c oxidoreductase. A model for the equilibrium between cytochrome b-562 and the Q-pool;Biochimica et Biophysica Acta (BBA) - Bioenergetics;1991-03
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