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Titlebook: Integration of Mitochondrial Function; John J. Lemasters,Charles R. Hackenbrock,Hans V. W Book 1988 Springer Science+Business Media New Yo

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Physical Constraints on Lateral Diffusion and Ubiquinone-Mediated Mitochondrial Electron Transportlucidating the physical constraints on diffusion related to electron transport function in the inner membrane. This model rejects the concept that permanent assemblies or transient aggregates of redox components in the inner membrane are necessary to account for the sequence or maximum rate for the
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Multiple Forms of Cytochrome C Oxidase Observed in Heart Tissue, Myocytes, and Mitochondria by Fourinknown origin to dioxygen, which is converted into two molecules of water. (For a thorough review see Wikstrom et al., 1981). Mammalian cytochrome oxidase is a large Y-shaped molecule that spans the inner mitochondrial membrane (Deatherage et al., 1983; Kim et al., 1985), and consists of one copy of
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Functional Importance of Mitochondrial Cardiolipin in Yeast Cytochrome , Oxidase Activityut into question (Powell and Abramovitch, 1985). The rate of electron transfer is determined by the electrostatic interactions that exist between the specific binding domains on the oxidase and the positively charged residues on ferrocytochrome . (Sinjorgo et al., 1987). The role that negatively cha
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