Potassium ion channels: molecular structure, function, and diseases
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
San Diego [u.a.]
Acad. Press
1999
|
Schriftenreihe: | Current topics in membranes
46 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXIV, 492 S. Ill., graph. Darst. |
ISBN: | 0121533468 |
Internformat
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245 | 1 | 0 | |a Potassium ion channels |b molecular structure, function, and diseases |c ed. by Yoshihisa Kurachi ... |
264 | 1 | |a San Diego [u.a.] |b Acad. Press |c 1999 | |
300 | |a XXIV, 492 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Current topics in membranes |v 46 | |
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650 | 7 | |a Kalium |2 gtt | |
650 | 4 | |a Potassium channels - Diseases | |
650 | 4 | |a Potassium channels - Physiology | |
650 | 4 | |a Potassium Channels |x physiology | |
650 | 4 | |a Potassium channels | |
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Datensatz im Suchindex
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adam_text | Contents
Contributors xv
Preface xxi
Previous Volumes in Series xxiii
CHAPTER 1 Studies of Voltage Dependent and Inwardly Rectifying
Potassium Channels
Lily Yeh Jan
I. Families of Potassium Channels 1
II. Voltage Dependent Potassium Channels 2
III. Inwardly Rectifying Potassium Channels 2
IV. Conclusion 3
References 4
PART I Voltage Dependent Potassium Channels
CHAPTER 2 The Impact of the Caenorhabditis elegans Genome
Project on Potassium Channel Biology
Lawrence Salkoff, Maya T. Kunkel, Zhao Wen Wang,
Alice Butler, Alex Yuan, Michael Nonet, and Aguan Wei
I. Introduction 9
II. C. elegans as an Animal Model to Study the Genetic
Determinants of Membrane Excitability 11
III. Potassium Channel Scope and Diversity 14
IV. Discussion 21
References 24
CHAPTER 3 Activation of Voltage Dependent Potassium Channels
Diane M. Papazian
I. Introduction 29
II. Control of Channel Activity by Voltage 31
V
vi Contents
III. Biophysical Analysis of Gating 32
IV. The S4 Hypothesis 33
V. Identification of Voltage Sensing Residues 34
VI. Movement of the Voltage Sensor in the Transmembrane
Electric Field 36
VII. Structural Interactions in the Voltage Sensor 38
VIII. Generality of the S4 Mechanism 40
IX. Role of the S4 Segment in Voltage
Insensitive Channels 40
X. An Emerging Picture of the Physical Mechanism of
Voltage Dependent Activation 42
References 43
CHAPTER 4 Permeation of Voltage Dependent Potassium Channels
Kuniaki lshii
1. Introduction 47
II. Probing the Pore Structure 48
III. Multi ion Nature 58
IV. Gate and Selectivity Filter 59
V. Conclusion 60
References 62
CHAPTER 5 Isk: A Novel Type of Potassium Channel
Regulatory Subunit
Jacques Barhanin, Georges Romey, and Michel Lazdunski
I. Short History 67
II. Association of IsK with KvLQTl 70
III. Differences between IsK and Ion Channel
ji Subunits 76
IV. Is IsK Unique? 77
V. Differences in Tissue Expression of KvLQTl and IsK
mRNA: Open Questions 78
VI. IsK Null Mutant Mice and Jervell and Lange Nielsen
Cardioauditory Disease Provide Evidence for the
Existence of the KvLQTl/IsK Complex in Vivo 80
VII. Conclusions 81
References 82
CHAPTER 6 Delayed Rectifier Potassium Channels in Normal and
Abnormal Cardiac Repolarization
Michael C. Sanguinetti and Martin Tristani Firouzi
I. Activation of K4 Channels Mediates
Cardiac Repolarization 85
i
Contents vii
II. The Activities of Multiple Potassium Channels Sum to
Form the Cardiac Delayed Rectifier Current 87
III. Mutations in Ion Channel Genes Cause Long QT
Syndrome and Increase the Risk of Life Threatening
Cardiac Arrhythmia 93
IV. Mechanism Based Therapy for Long QT Syndromes 97
References 98
CHAPTER 7 Mutational Analysis of Familial Long QT Syndrome
in Japan
Toshihiro Tanaka and Yusuke Nakamura
I. Introduction 103
II. Materials and Methods 105
III. Results 106
IV. Discussion 110
References 114
CHAPTER 8 Calcium Activated Potassium Channels in Muscle
and Brain
Martin Wallner, Pratap Meera, and Ligia Toro
I. Introduction 117
II. Large Conductance. Voltage Gated, and Ca: Sensitive
K~ Channels 118
III. Small Conductance Ca2 Dependent K Channels 128
IV. Summary 134
References 135
PART II Inwardly Rectifying Potassium Channels
CHAPTER 9 The Assembly of Inwardly Rectifying
Potassium Channels
Andrew Tinker and Lily Yeh Jan
I. Introduction 143
II. Experimental Studies of Kir Assembly 144
III. A Possible Model for Kir Assembly 151
IV. Comparing the Assembly of Kv and Kir
Potassium Channels 152
V. Outstanding Issues in Relation to Kir Assembly 153
References 154
viii Contents
CHAPTER 10 Inwardly Rectifying Potassium Channels: Mechanisms
of Rectification
C. G. Nichols and A. N. Lopatin
I. Potassium Channels and Inward Rectification:
Introduction and Definitions 159
II. The Mechanism of Inward Rectification 161
III. The Structure of the Kir Channel Pore: Binding Sites
for Polyamines 168
IV. The Physiological Significance of
Polyamine Induced Rectification 169
V. Conclusions 170
References 171
CHAPTER 11 Structure Function Relationship of the Inward
Rectifier Potassium Channel
Yoshihiro Kubo and Liang Guo
I. Introduction 177
II. Dependence on External K+:
R148Y Mutant 178
HI. Open Close Kinetics at a Steady State:
Q140E Mutant 184
IV. Discussion: Comparison with Voltage Gated
K* Channels 194
References 196
CHAPTER 12 Potassium Channels with Two P Domains
Florian Lesage and Michel Lazdunski
I. Introduction 199
II. TWIK: A New Type of Pore Forming
Subunit 200
III. A Family of TWIK Related K^ Channels in Humans
and Mice 204
IV. What Are the Functional Roles for TWIK Related
K Channels? 211
V. TWIK Related K+ Channels in Drosophila and
Caenorhabditis elegans 213
VI. Other Two P Domain K+ Channels in Yeasts
and Plants 217
VII. Conclusion 218
References 219
Contents ix
CHAPTER 13 Intracellular Regulation of Inwardly Rectifying
Potassium Channels
J. P. Ruppersberg, J. Schultz, U. Briindle, B. Fakler,
and U. Schulte
I. Introduction 223
II. Results 225
III. Discussion 238
IV. Materials and Methods 239
References 240
CHAPTER 14 Regulation of Ion Channels by Membrane Proteins
Hiroshi Hibino, Andre Terzic, Atsushi Inanobe,
Yoshiyuki Horio, and Yoshihisa Karachi
1. Introduction 244
II. Modulation of Kir Channel Function 245
III. Cytoskeleton Effects on Ion Channels 246
IV. Site Directed Ion Channel Distribution by Cytoskeleton
Associated Proteins 249
V. Role for Phosphorylation in Cytoskeletal Protein
Directed Clustering of Ion Channels 256
VI. Regulation of Ion Channel Function by
Cytoskeletal Proteins 258
VII. Mechanosensitive Gating of Ion Channels
and Cytoskeleton 265
VIII. Summary 266
References 267
CHAPTER 15 Distribution of Inwardly Rectifying Potassium
Channels in the Brain
Christine Karschin and Andreas Karschin
I. Introduction 273
II. Distribution of Kir Channel Subunits 274
III. The Possible Formation of Heteromultimcric Kir
Channels in the Brain 283
IV. Subcellular Localization of Kir Channel Subunits 284
V. Kir Channel Subunits in Glia and
Nonneuronal Elements 285
VI. Kir Channel Expression in the Developing CNS 286
References 289
x Contents
PART III G Protein Gated Potassium Channels
CHAPTER 16 G Protein Gated Potassium Channels: Implication for
the weaver Mouse
Betsy Navarro, Shawn Corey, Matthew Kennedy,
and David E. Clapham
I. Introduction 295
II. The G Protein Activated Inwardly Rectifying
Potassium Channels 296
III. Wild type Kir 3.2 301
IV. weaver Mice Kir 3.2 303
V. The Pathophysiology of weaver Mice 307
VI. Conclusion 314
References 315
CHAPTER 17 G Protein Control of G Protein Gated
Potassium Channels
Eitan Reuveny and Lily Yeh Jan
1. Introduction 321
II. Primary Structure 322
III. GIRK Channels Are Activated by G^ 324
IV. Regions Involved in Binding and Activation of
GIRK Channels 326
V. G/Jy and Single Channel Kinetics 329
References 331
CHAPTER 18 Effect of Phosphatidylinositol Phosphates on the
Gating of G Protein Activated K+ Channels
Jin Liang Sui, Jerome Petit Jacques,
and Diomedes E. Logothetis
I. Introduction 337
II. Materials and Methods 338
III. Results 340
IV. Discussion 350
References 352
CHAPTER 19 Functional Analyses of G Protein Activation of
Cardiac Kc Channel
Yukio Hosoya and Yoshihisa Kurachi
I. Introduction 355
Contents xi
II. Muscarinic K+ Channel Activation by G Proteins 356
III. Receptor G Protein Interaction 359
IV. Receptor G Protein Muscarinic K~
Channel Interaction 361
V. Conclusion 367
References 368
PART IV ATP Sensitive Potassium Channels
CHAPTER 20 Structure and Function of ATP Sensitive
Potassium Channels
Takashi Miki, Nobnya Intigtiki, Kazuaki Nagashima,
Tohru Gonoi, and Susumti Seino
I. Introduction 373
II. Structural and Functional Properties of Cloned
KATP Channels 374
III. Stoichiometry of the /3 Cell KATP Channel 379
IV. Transgenic Mice Expressing a Dominant Negative
KATP Channel 380
V. Conclusion 383
References 383
CHAPTER 21 Molecular Structure and Function of Cardiovascular
ATP Sensitive Potassium Channels
Mitsuhiko Yumada, Eisaku Satoh, Chikako Kondo,
Vez P. Repunte, and Yoshihisu Kurachi
I. Introduction 387
II. Molecular Structure of Cardiovascular
KATP Channels 389
III. Expression of Recombinant KAT| Channels 395
IV. Comparison between the SUR2A/Kir6.2 and SUR2B/
Kir6.2 Channels 396
V. Comparison between SURB/Kir6.2 and SUR2B/
Kir6.1 Channels 406
VI. Conclusions 412
References 412
xii Contents
CHAPTER 22 Role of ATP Sensitive Potassium Channels
in Ischemia/Reperfusion lnduced
Ventricular Arrhythmias
Makoto Arita and Sakuji Shigematsu
I. Introduction 417
II. Materials and Methods 418
III. The Persistent Activation of KATP Channels 419
IV. Pathophysiological Roles of KATp
Channel Activation 421
V. Divergent Effects of Antiarrhythmic Drugs on KATp
Channels and Their Implications 429
References 432
CHAPTER 23 Role of KATP Channels in Cardioprotection
Masafumi Kitakaze, Yasuhiko Sakata, Kazuhisa Kodama,
Tsunehiko Kuzuya, and Masatsugu Hori
I. Introduction 435
II. Adenosine in Ischemic Hearts 435
III. Actions of Adenosine and KATP Channels in
Coronary Vasodilation 437
IV. Experimental Evidence for KATP Channel
Mediated Cardioprotection 440
V. Clinical Evidence for KATP Channel
Mediated Cardioprotection 443
VI. Summary 445
References 445
CHAPTER 24 Subcellular Heterogeneity of Energy Metabolism and
KATP Current Oscillation in Cardiac Myocytes
Brian O Rourke, Dmitry N. Romashko, and Eduardo Marbcin
I. Introduction 449
II. Methods 451
III. Results 456
IV. Discussion 464
References 465
Contents xiii
PART V Other Inwardly Rectifying Potassium Channels
CHAPTER 25 dial Inwardly Rectifying Potassium Channels
Yoshiyuki Horio and Yoshihisa Kurachi
I. Spatial Buffering of K+ Ions in Glial Cells 471
II. Kir Channels in Retinal Mttller Glial Cells 472
III. Kir Channels in Schwann Cells 477
IV. Kir Channels in Other Glial Cells 478
V. Developmental Regulation of Glial Kir Channels 480
VI. Summary of Glial Inwardly Rectifying
Potassium Channels 482
References 482
Index 485
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physical | XXIV, 492 S. Ill., graph. Darst. |
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spelling | Potassium ion channels molecular structure, function, and diseases ed. by Yoshihisa Kurachi ... San Diego [u.a.] Acad. Press 1999 XXIV, 492 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Current topics in membranes 46 Canaux à potassium - Congrès Ionenkanalen gtt Kalium gtt Potassium channels - Diseases Potassium channels - Physiology Potassium Channels physiology Potassium channels Kaliumkanal (DE-588)4258505-3 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 1997 Yamagata gnd-content Kaliumkanal (DE-588)4258505-3 s DE-604 Kurachi, Yoshihisa Sonstige oth Current topics in membranes 46 (DE-604)BV036839511 46 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008524410&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Potassium ion channels molecular structure, function, and diseases Current topics in membranes Canaux à potassium - Congrès Ionenkanalen gtt Kalium gtt Potassium channels - Diseases Potassium channels - Physiology Potassium Channels physiology Potassium channels Kaliumkanal (DE-588)4258505-3 gnd |
subject_GND | (DE-588)4258505-3 (DE-588)1071861417 |
title | Potassium ion channels molecular structure, function, and diseases |
title_auth | Potassium ion channels molecular structure, function, and diseases |
title_exact_search | Potassium ion channels molecular structure, function, and diseases |
title_full | Potassium ion channels molecular structure, function, and diseases ed. by Yoshihisa Kurachi ... |
title_fullStr | Potassium ion channels molecular structure, function, and diseases ed. by Yoshihisa Kurachi ... |
title_full_unstemmed | Potassium ion channels molecular structure, function, and diseases ed. by Yoshihisa Kurachi ... |
title_short | Potassium ion channels |
title_sort | potassium ion channels molecular structure function and diseases |
title_sub | molecular structure, function, and diseases |
topic | Canaux à potassium - Congrès Ionenkanalen gtt Kalium gtt Potassium channels - Diseases Potassium channels - Physiology Potassium Channels physiology Potassium channels Kaliumkanal (DE-588)4258505-3 gnd |
topic_facet | Canaux à potassium - Congrès Ionenkanalen Kalium Potassium channels - Diseases Potassium channels - Physiology Potassium Channels physiology Potassium channels Kaliumkanal Konferenzschrift 1997 Yamagata |
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