Chloride movements across cellular membranes

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Weitere Verfasser: Pusch, Michael (HerausgeberIn)
Format: Buch
Sprache:English
Veröffentlicht: Amsterdam [u.a] Elsevier 2007
Schriftenreihe:Advances in molecular and cell biology 38
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adam_text Contents Contributors ix Preface xi 1. Chloride-Transporting Proteins in Mammalian Organisms: An Overview Michael Pusch References 6 2. Physiological Functions of the CLC Chloride Transport Proteins Tanja Maritzen, Judith Blanz, and Thomas Jentsch I. Introduction 10 II. Physiological Function of CLC-0 and Mammalian CLC Proteins 15 III. CLC Proteins in Model Organisms 43 IV. Summary and Outlook 46 References 46 3. Structure and Function of CLC Chloride Channels and Transporters Alessio Accardi I. The Structure of CLC-ecl, a Bacterial CLC Transporter 60 II. Structural Conservation Among the CLCs 62 III. Ion Selectivity, Permeation and Binding 63 IV. A Multi-Ion Pore 64 V. Channels and Transporters: Where Is the Difference? 65 VI. Function of the CLC Transporters 66 VII. Speculative Modeling 68 VIII. CLC Channel Gating 69 IX. The Role of the C-Terminal Domain of CLC Channels: Recent Developments 77 X. Conclusions and Outlook 78 References 79 4. Pharmacology of CLC Chloride Channels and Transporters Michael Pusch, Antonella Liantonio, Annamaria De Luca, and Diana Conte Camerino I. Introduction 83 II. The Pharmacology of the Macroscopic Skeletal Muscle C Conductance gCl 84 v vi Contents III. New Molecules Targeting C1C-1 Identified Using Heterologous Expression 88 IV. Mechanism of Block of Muscle Type CLC Channels by Clofibric Acid Derivatives 91 V. The Binding Site for 9-AC and CPA on C1C-1 and C1C-0 and Use of CPA as a Tool to Explore the Mechanisms of Gating of C1C-0 96 VI. Pharmacology of CLC-K Channels 98 VII. Other CLC Channels and Other Blockers 101 VIII. Potential of Having Blockers of C1C-2, C1C-3, C1C-5, C1C-7: Outlook 102 References 103 5. The Physiology and Pharmacology of the CFTR Cl Channel Zhiwei Cai, Jeng-Haur Chen, Lauren K. Hughes, Hongyu Li, and David N. Sheppard I. Introduction 109 II. The Molecular Physiology of CFTR 110 III. The Cellular Physiology of CFTR 116 IV. The Role of CFTR in Epithelial Physiology 117 V. The Pathophysiology of CFTR 120 VI. The Pharmacology of CFTR 123 VII. Conclusions 137 References 137 6. Gating of Cystic Fibrosis Transmembrane Conductance Regulator Chloride Channel Zhen Zhou and Tzyh-Chang Hwang I. CFTR Overview 145 II. Regulation of CFTR by Phosphorylation/Dephosphorylation 148 III. CFTR Is an ATPase 152 IV. Structural Biology of ABC Transporters 153 V. Methods Used to Study CFTR Gating 157 VI. CFTR Gating by ATP 160 VII. Unsettled Issues and Future Directions 169 References 172 7. Functional Properties of Ca2+-Dependent Cl Channels and Bestrophins: Do They Correlate? Jorge Arreóla and Patricia Pérez-Cornejo I. Summary 181 II. Introduction 182 III. Functional Properties of CaCCs 182 IV. Molecular Candidates of CaCCs 187 Contents VÜ V. Functional Properties of Bestrophins 188 VI. Concluding Remarks 191 References 193 8. Cell Volume Homeostasis: The Role of Volume-Sensitive Chloride Channels Alessandro Sordini I. Introduction 199 II. Cell Volume Homeostasis 200 III. Volume-Sensitive Cl~ Channels 203 IV. Concluding Remarks 210 References 211 9. GABAergic Synaptic Transmission Andreas Draguhn and Kristin Hartmann I. Postsynaptic G AB A Responses 216 II. Molecular Composition and Function of GABAergic/Glycinergic Synapses 221 III. Modulation of Synaptic Functions Through Endogenous Substances and Drugs 228 IV. Perspective: Specificity of GABAergic and Glycinergic Signaling in Defined Networks 232 References 233 10. Physiology of Cation-Chloride Cotransporters Christian A. Hübner and Marco B. Rust I. Introduction 241 II. The Cation-Chloride Cotransporter Family 243 III. Cation-Chloride Cotransporters in the Nervous System 250 IV. Cation-Chloride Cotransporters in the Inner Ear 256 V. Cation-Chloride Cotransporters in the Kidney 259 VI. Cation-Chloride Cotransporters in RBCs 262 VII. Cation-Chloride Cotransporter and Cancer 265 VIII. Cation-Chloride Cotransport and Hypertension 266 IX. Concluding Remarks 267 References 267 11. Plasma Membrane CP/HCO^ Exchange Proteins Haley J. Shandro and Joseph R. Casey I. Introduction 280 II. The Cr/HCO^ Exchangers 280 III. Disputed Cr/HCO^ Exchangers 300 viii Contents IV. Structure 301 V. Regulation and Inhibition of CP/HCOf Exchange 303 VI. Pathophysiology 309 References 312 12. Orchestration of Vectorial Chloride Transport by Epithelia Peying Fong and Michael A. Gray I. Introduction 329 II. Epithelial Cell Structure and Organization 330 III. Junctional Proteins: An Overview 334 IV. Chloride Transporting Proteins in Epithelia: Channels, Transporters, and All Things in Between 336 V. PDZ Proteins: What Are They? Where Are They? What Do They Do? 347 VI. Two Diseases Involving Epithelial Chloride Transport 351 VII. Summary 356 References 357 Index 369
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series2 Advances in molecular and cell biology
spellingShingle Chloride movements across cellular membranes
Advances in molecular and cell biology
title Chloride movements across cellular membranes
title_auth Chloride movements across cellular membranes
title_exact_search Chloride movements across cellular membranes
title_full Chloride movements across cellular membranes ed. Michael Pusch
title_fullStr Chloride movements across cellular membranes ed. Michael Pusch
title_full_unstemmed Chloride movements across cellular membranes ed. Michael Pusch
title_short Chloride movements across cellular membranes
title_sort chloride movements across cellular membranes
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020176062&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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