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Structure, biogenesis, and assembly of energy transducing enzyme systems /

Current Topics in Bioenergetics.

Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Lee, C. P. (Chuan-Pu), 1931-2016
Formato: Electrónico eBook
Idioma:Inglés
Publicado: San Diego : Academic Press, �1987.
Colección:Current topics in bioenergetics ; volume 15.
Temas:
Acceso en línea:Texto completo

MARC

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264 1 |a San Diego :  |b Academic Press,  |c �1987. 
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490 1 |a Current topics in bioenergetics,  |x 0070-2129 ;  |v volume 15 
504 |a Includes bibliographical references and index. 
588 0 |a Print version record. 
505 0 |a Front Cover; Current Topics in Bioenergetics: Structure, Biogenesis, and Assembly of Energy Transducing Enzyme Systems; Copyright Page; Table of Contents; Preface; Chapter 1. Structure of NADH-Ubiquinone Reductase (Complex I); I. Introduction; II. Catalytic Properties; III. Monomer or Dimer; IV. The Polypeptide Composition; V. Fragmentation of the Enzyme; VI. Structural Studies Using Hydrophilic and Hydrophobic Probes; VII. The Structure of the Enzyme and Its Relationship to Mechanism; REFERENCES; Chapter 2. Structure of the Succinate-Ubiquinone Oxidoreductase (Complex II); I. Introduction. 
505 8 |a II. Iron-Sulfur Clusters of Succinate DehydrogenaseIII. Cytochrome b of Succinate-UQ Reductase; IV. Concluding Remarks; REFERENCES; Chapter 3. Structure of Mitochondrial Ubiquinol-Cytochrome-c Reductase (Complex III; I. Introduction; II. Isolation and Molecular Weight; III. Structural Features of Subunits; IV. Three-Dimensional Structure; V. Topography of Subunits; VI. Structure-Function Relationship; VII. Summary; REFERENCES; Chapter 4. Structure of Cytochrome-c Oxidase; I. Introduction; II. Size and Shape of the Bovine Heart Cytochrome-c Oxidase. 
505 8 |a III. Aggregation State in Relation to FunctionIV. Prosthetic Groups; V. Subunit Structure; VI. Arrangement of Polypeptides in the Cytochrome-c Oxidase Complex; VII. Identification of Apoproteins for the Redox Centers; VIII. Proton Pumping and Subunit MtIII; IX. Cytochrome c Binding Sites and Subunit MtII; X. Role of the Cytoplasmically Synthesized Polypeptides in Cytochrome-c Oxidase Activity; REFERENCES; Chapter 5. Evolution of a Regulatory Enzyme: Cytochrome-c Oxidase (Complex IV); I. Introduction; II. Role of Cytochrome-c Oxidase in Energy Metabolism. 
505 8 |a III. Catalytic Cofactors and Role of LipidsIV. Biosynthesis and Assembly; V. Subunit Composition; VI. Tissue-Specific Isozymes; VII. Amino Acid Sequences; VIII. Structure and Membrane Orientation; IX. Binding Domains; X. Kinetics; XI. Proton Translocation; XII. Regulatory Function of Subunits; XIII. Evolution of Cytochrome-c Oxidase; REFERENCES; Chapter 6. The Assembly of F1F0-ATPase in Escherichia coli; I. Introduction; II. Assembly of the b Subunit into a Functional F0; III. Proton-Impermeable F0 Sectors Resulting from Mutant F1-ATPase Subunits. 
505 8 |a IV. Assembly of F0 Subunits in Genetically Engineered StrainsV. Summary; REFERENCES; Chapter 7. Biogenesis of Mitochondrial Energy Transducing Complexes; I. Introduction; II. Biogenesis of Nuclear-Coded Mitochondrial Proteins; III. Biogenesis of Proteins Coded by Mitochondrial Genes; IV. Coordination between Cytoplasmic and Mitochondrial Protein Synthesis; V. Assembly of Protein Complexes; VI. Biogenesis Pathways; VII. Perspectives; REFERENCES; Chapter 8. Biogenesis of Mammalian Mitochondria; I. The Mitochondrial Genome; II. Mitochondrial Proteins Encoded in the Nucleus. 
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