Handbook of ATPases—Biochemistry, Cell Biology, Pathophysiology |
Preface |
List of Contributors |
Part I - P-Type ATPases |
Chapter 1 |
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Yeast Plasma-membrane H+-ATPase: Model System for Studies of Structure, Function, Biogenesis, and Regulation |
Chapter 2 |
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Regulation of the Sarco(endo)plasmic Reticulum Ca2+-ATPase by Phospholamban and Sarcolipin |
Chapter 3 |
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Catalytic and Transport Mechanism of the Sarco-(Endo)Plasmic Reticulum Ca2+-ATPase (SERCA) |
Chapter 4 |
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The Na, K-ATPase: A Current Overview |
Chapter 5 |
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Copper-Transporting ATPases: Key Regulators of Intracellular Copper Concentration |
Chapter 6 |
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Bacterial Transport ATPases for Monovalent, Divalent and Trivalent Soft Metal Ions |
Chapter 7 |
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Gastric H+, K+-ATPase |
Chapter 8 |
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Plasma Membrane Calcium Pumps |
Part II - F-type ATPases |
Chapter 9 |
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Proton Translocating ATPases: Introducing Unique Enzymes Coupling Catalysis and Proton Translocation through Mechanical Rotation |
Chapter 10 |
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Rotation of F1-ATPase |
Chapter 11 |
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Coordinating Catalysis and Rotation in the F1-ATPase |
Chapter 12 |
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ATP Synthase Stalk Subunits b, δ and ε: Structures and Functions in Energy Coupling |
Part III - V-type ATPases |
Chapter 13 |
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Structure, Mechanism and Regulation of the Yeast and Coated Vesicle V-ATPases |
Chapter 14 |
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Role of the V-ATPase in the Cellular Physiology of the Yeast Saccharomyces cerevisiae |
Chapter 15 |
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Vacuolar-Type Proton ATPases: Subunit Isoforms and Tissue-Specific Functions |
Part IV - Cell Biology and Pathophysiology of ATPases and their Compartments |
Chapter 16 |
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Physiological Role of Na, K-ATPase Isoforms |
Chapter 17 |
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Renal V-ATPase: Physiology and Pathophysiology |
Chapter 18 |
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Lytic Function of Vacuole, Molecular Dissection of Autophagy in Yeast |