
Current Topics in Membranes
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Content
- Front Cover
- Developmental Biology of Membrane Transport Systems
- Copyright Page
- Contents
- Contributors
- Foreword
- Preface
- Previous Volumes in Series
- Part I: Molecular Biology of Transport Proteins and Membrane Protein Sorting
- Chapter 1. Molecular Biology of Membrane Transport Proteins
- I. Introduction
- II. The Coding of Membrane Protein Structure
- III. Model Structures
- IV. Conclusions and Perspectives
- References
- Chapter 2. Biogenesis and Sorting of Plasma Membrane Proteins
- I. Introduction
- II. Biogenesis of Membrane Proteins
- III. Sorting and Epithelial Polarity
- IV. Conclusion
- References
- Part II: Fertilization and Early Embryonic Development
- Chapter 3. Electrical Characteristics of Oocytes and Eggs
- I. Introduction
- II. Ion Channels in Oocytes and Mature Eggs
- III. Electrical Characteristics of Oocytes
- IV. Fertilization
- V. Conclusions
- References
- Chapter 4. Ion and Solute Transport in Preimplantation Mammalian Embryos
- I. Introduction
- II. Ion Transport
- III. Fluid Transport
- IV. Sugar Transport
- V. Protein Transport
- VI. Amino Acid Transport
- VII. Summary and Prospects
- References
- Part III: Developmental Biology of Ion and Solute Co- and Counter-Transport
- Chapter 5. Cell Biology and Molecular Genetics of Enterocyte Differentiation
- I. Introduction
- II. Markers of Enterocyte Differentiation
- III. Fetal Development
- IV. Enterocyte Differentiation in Adult Intestine
- V. Enterocyte Differentiation in Vitro
- VI. Disease Effects on Enterocyte Differentiation
- VII. Barrier Function and Enterocyte Development
- VIII. Concluding Remarks
- References
- Chapter 6. Ion Transport and Adenylyl Cyclase System in Red Blood Cells
- I. Introduction
- II. Hormone-Sensitive Adenylyl Cyclase System
- III. Effects of cAMP on Ion Channels and Transport
- IV. Adenosine Influence on Ion Movements
- V. Conclusions
- References
- Part IV: Ion Channel Development
- Chapter 7. Development, Maintenance, and Modulation of Voltage-Dependent Sodium Channel Topography in Nerve Cells
- I. Introduction
- II. Molecular Properties of Voltage-Dependent Sodium Channels
- III. Localization and Maintenance of Voltage-Dependent Sodium Channels
- IV. Differentiation of the Axon Membrane: Localization of Sodium Channels in Developing Nerve
- V. Conclusions and Perspectives
- References
- Chapter 8. Biogenesis of the Mouse Muscle Nicotinic Acetylcholine Receptor
- I. Introduction
- II. Subunit Structure and Processing
- III. Assembly
- IV. Conclusions
- References
- Note Added in Proof
- Chapter 9. Functional Properties of Voltage-Dependent Calcium Channels
- I. Introduction
- II. Ca2+ Selectivity
- III. Voltage-Dependent Activation
- IV. Inactivation
- V. Facilitation and Gating Modes
- VI. Different Types of Ca2+ Channels
- VII. Summary
- References
- Chapter 10. Potassium Channels in Developing Excitable Cells
- I. Introduction
- II. K+ Channels in Developing Neurons
- III. Smooth Muscle Cells and K(Ca) Channels
- IV. K+ Channels in Developing Drosophila
- V. Cell Interaction and Ion Channel Development
- VI. Recapitulation and Coda
- References
- Chapter 11. Potassium Channels in Development, Activation, and Disease in T Lymphocytes
- I. Introduction
- II. Properties of K+ Channels in Lymphocytes
- III. Molecular Basis of K+ Channel Diversity
- IV. Voltage-Gated K+ Channels in Development
- V. K+ Channels and T Cell Function
- VI. Voltage-Gated K+ Channels in Autoimmune Diseases
- VII. Conclusions
- References
- Chapter 12. Development of Epithelial Na+ Channels and Regulation by Guanine Nucleotide Regulatory (G) Proteins and Phospholipids
- I. Introduction
- II. Developmental Expression of Epithelial Na+ Channels
- III. Regulation of Na+ Channel Activity
- IV. Conclusions and Perspective
- References
- Index
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