2007Unpublished venueRequires access

Cellular Energy Metabolism and Integrated Oxidative Phosphorylation

Xavier Leverve, Nellie Taleux, R. Favier, Cécile Batandier, Dominique Détaille, Anne Devin, Éric Fontaine, Michel Rigoulet

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Abstract

This chapter contains sections titled: Abstract Introduction Membrane Transport and Initial Activation Cytosolic Pathway Mitochondrial Transport and Metabolism Respiratory Chain and Oxidative Phosphorylation Electron Supply Reducing Power Shuttling Across the Mitochondrial Membrane Electron Transfer in the Respiratory Chain: Prominent Role of Complex I in the Regulation of the Nature of Substrate Modulation of Oxidative Phosphorylation by Respiratory Chain Slipping and Proton Leak The Nature of Cellular Substrates Interferes with the Metabolic Consequences of Uncoupling Dynamic Supramolecular Arrangement of Respiratory Chain and Regulation of Oxidative Phosphorylation References

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What this paper is about

This chapter contains sections titled: Abstract Introduction Membrane Transport and Initial Activation Cytosolic Pathway Mitochondrial Transport and Metabolism Respiratory Chain and Oxidative Phosphorylation Electron Supply Reducing Power Shuttling Across the Mitochondrial Membrane Electron Transfer in the Respiratory Chain: Prominent Role of Complex I in the Regulation of the Nature of Substrate Modulation of Oxidative Phosphorylation by Respiratory Chain Slipping and Proton Leak The Nature of Cellular Substrates Interferes with the Metabolic Consequences of Uncoupling Dynamic Supramolecular Arrangement of Respiratory Chain and Regulation of Oxidative Phosphorylation References

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Available abstract

This chapter contains sections titled: Abstract Introduction Membrane Transport and Initial Activation Cytosolic Pathway Mitochondrial Transport and Metabolism Respiratory Chain and Oxidative Phosphorylation Electron Supply Reducing Power Shuttling Across the Mitochondrial Membrane Electron Transfer in the Respiratory Chain: Prominent Role of Complex I in the Regulation of the Nature of Substrate Modulation of Oxidative Phosphorylation by Respiratory Chain Slipping and Proton Leak The Nature of Cellular Substrates Interferes with the Metabolic Consequences of Uncoupling Dynamic Supramolecular Arrangement of Respiratory Chain and Regulation of Oxidative Phosphorylation References

Key concepts: Oxidative phosphorylation, Energy metabolism, Oxidative metabolism, Metabolism, Chemistry, Phosphorylation, Cell biology, Biochemistry

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