Molecular mechanisms controlling transmembrane transport:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2004
|
Schriftenreihe: | Topics in Current Genetics
9 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XV, 407 S. Ill., graph. Darst. |
ISBN: | 3540218378 |
Internformat
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245 | 1 | 0 | |a Molecular mechanisms controlling transmembrane transport |c Hrsg. Eckhard Boles ; Hrsg. Reinhard Krämer |
264 | 1 | |a Berlin [u.a.] |b Springer |c 2004 | |
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Datensatz im Suchindex
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adam_text | Table of contents
Transcriptional regulation of intestinal nutrient transporters 1
SorayaP. Shirazi Beechey 1
Abstract 1
1 Introduction 1
2 Gene transcription 5
3 Organisation of the intestinal epithelium and gene expression 5
4 Transcriptional regulation of nutrient transporters in the small intestine... 6
4.1 Intestinal iron absorption 7
4.2 Intestinal peptide transport 7
4.3 Intestinal bile salt transport 8
4.4 Intestinal glucose transport 9
5 Regulation of nutrient transport in the large intestine 12
5.1 Adaptive response of the colonic epithelium in short bowel
syndrome 15
Acknowledgements 17
References 18
Generation of transporter isoforms by alternative splicing 23
GerardoGamba 23
Abstract 23
1 Introduction 23
2 Alternative splicing with physiological consequences in membrane
transporters 24
2.1 Electroneutral Cl coupledcotransporters (SLC12 family) 24
2.2 The urea transporters (SLC14 family) 28
2.3 Na+/bile acid transporter (SLC10A family) 30
2.4 Na+/wyo Inositol cotransporters (members of the SLC5 family) 32
2.5 Na+/bicarbonate cotransporters and exchangers (members of the
SLC4 family) 34
2.6 The divalent metal transporter DMT1 (member of the SLC11
family) 37
3 Conclusion 38
References 39
Transport dependent gene regulation by sequestration of transcriptional
regulators 47
Alex Bohm and Winfried Boos 47
Abstract 47
1 Introduction 47
2 Signaling pathways: two examples 48
2.1 The transcription activator MalT 48
VI Table of contents
2.2 The global regulator Mlc 56
3 The PutA, GlnK, and NifL signal transduction proteins 58
4 Conclusion 60
Acknowledgements 61
References 61
Abbreviations 66
Regulation of carrier mediated sugar transport by transporter quaternary
structure 67
KaraB. Levine and Anthony Carruthers 67
Abstract 67
1 Introduction 67
2 Human red blood cell glucose transport 69
2.1 GluTl quaternary structure 69
2.2 Determinants of GluTl quaternary structure 76
2.3 Is quaternary structure the sole determinant of GluTl function? 78
3 Glucose transporter quaternary structure and regulation of GluTl 80
3.1 A model for nucleotide regulation of sugar transport 82
Acknowledgements 85
References 85
Regulation and function of ammonium carriers in bacteria, fungi,
and plants 95
Nicolaus von Wiren and Mike Merrick 95
Abstract 95
1 Introduction 95
2 The ammonium transport protein family 97
2.1 Distribution andphylogeny 97
2.2 Membrane topology 98
2.3 Structure function relationships 100
2.4 Mode of action 102
3 Bacterial ammonium transporters 104
3.1 Regulation of Amt activity in bacteria 104
3.2 The role of Amt in ammonium sensing 106
4 Fungal ammonium transporters 107
4.1 Regulation of Amt/Mep protein activity in fungi 107
4.2 Amt proteins as ammonium sensors in fungi 108
5 Plant ammonium transporters 109
5.1 The function of Amt proteins in plants 109
5.2 Biochemical transport properties of AMTs 110
5.3 Transcriptional regulation of AMT transporters in plants 110
6 Ammonium/ammonia transport by other (than AMT type)
transporters in plants 113
References 114
Table of contents VII
Role of transporter like sensors in glucose and amino acid signalling
in yeast 121
Eckhard Boles and Bruno Andre 121
Abstract 121
1 Introduction 121
2 The SnG, Rgt2, and Ssyl sensors are members of large transporter
families 122
2.1 The yeast hexose transporter family 122
2.2 The yeast amino acid transporters 123
3 The yeast glucose and amino acid sensors: initial description and
functions 125
3.1 The Snf3 and Rgt2 glucose sensors 125
3.2 The Ssyl amino acid sensor 127
3.3 Mechanisms of sensing: models 129
4 Signal transduction pathways 134
4.1 The glucose sensing pathway 134
4.2 The amino acid sensing pathway 140
5 Are there transporter like sensors in higher eukaryotes? 144
6 Prospects and future directions 145
Acknowledgement 146
References 146
Osmoregulation and osmosensing by uptake carriers for compatible
solutes in bacteria 155
Susanne Morbach and Reinhard Kramer 155
Abstract 155
1 Introduction 155
2 Osmodependent transport systems in bacteria 156
3 Osmoregulated solute carriers of C. glutamicum: osmosensing and
osmoregulation 158
3.1 BetPof C. glutamicum: structural properties 159
3.2 BetP of C. glutamicum: catalytic properties 160
3.3 BetP of C. glutamicum: regulatory properties 160
3.4 BetP of C. glutamicum: sensory properties 164
4 Other osmoregulated carrier systems 168
4.1 ProP of E. coli 169
4.2 OpuA / BusA of L. lactis 170
4.3 Kdp off. coli 171
4.4 Osmoregulation and osmosensing by mechanosensitive channels. 172
5 General concepts and conclusions 173
References 174
The bacterial phosphotransferase system: a perfect link of sugar transport
and signal transduction 179
J6rg Stulke and Matthias H. Schmalisch 179
Abstract 179
VIII Table of contents
1 Introduction 179
2 The phosphorylation state of PTS proteins is tightly controlled 182
2.1 Control of EIIAClT phosphorylation in£. coll 182
2.2 Control of HPr phosphorylation in Gram positive bacteria 184
2.3 Regulation of HPr kinase/phosphorylase activity 185
3 Control of transporter and enzyme activities by PTS components.... 187
3.1 Control of transporter activities by the PTS in Gram negative
bacteria 187
3.2 Control of transporter activities by the PTS in Gram positive
bacteria •• 190
3.3 Control of enzymatic activities by the PTS 191
4 Regulation of transcription by PTS components 193
4.1 PTS dependent generation of cofactors for transcription regulators 193
4.2 Control of transcription regulators by direct phosphorylation 194
5 Conclusion 197
Acknowledgements 197
References 197
Ancillary proteins in membrane targeting of transporters 207
TomasNyman, JhansiKota, and Per O. Ljungdahl 207
Abstract 207
1 Introduction 207
2 The secretory pathway 209
3 Vesicle mediated transport 211
4 Formation of COPII coated vesicles 213
5 Cargo selection sorting motifs bind Sec24p 215
6 Sorting signals 217
7 Sec24p homologs cargo selection by combinatorial mechanisms 218
8 Ancillary proteins packaging chaperones 219
9 Shr3p the original packaging chaperone 220
10 Additional packaging chaperones Pho86p, Gsf2p, and Chs7p 222
11 Packaging chaperones presentation of sorting motifs 223
12 Coatomer asymmetry may influence the differential packaging
of cargo 225
13 Concluding remarks 226
Acknowledgements 228
References 228
Regulation of transporter trafficking by the lipid environment 235
Miroslava Opekarova 235
Abstract 235
1 Introduction 235
2 Itineration of transporters to the plasma membrane 236
3 Topology of lipid synthesis along the secretory pathway 237
4 Lipid rafts and associated transporters 239
5 Raft dependent sorting of transporters in the secretory pathway 240
Table of contents IX
5.1 Location of transporter raft association 240
5.2 Lipid requirements for transporter raft association 242
5.3 Asymmetric distribution of transporters in polarized cells 242
5.4 Molecular models for raft based protein sorting 243
5.5 Determination of raft association 244
6 Clustering and oligomerization of transporter molecules in the
plasma membrane 245
7 Lipid function as molecular chaperons 246
8 Conclusions 247
Acknowledgement 247
References 248
Trafficking of vesicular transporters to secretory vesicles 255
Vania F. Prado, Marc G. Caron, and Marco A.M. Prado 255
Abstract 255
1 Classes of vesicular transporters 255
2 Classes of secretory vesicles 256
3 Cellular routes taken by vesicular proteins 257
3.1 SV proteins 257
3.2 LDCV proteins 259
4 Localization of vesicular transporters in neurons 260
5 Sorting of vesicular transporters in PC12 cells 261
6 Sorting motifs identified in vesicular transporters 262
7 Concluding remarks 265
Acknowledgements 266
References 266
Membrane trafficking of yeast transporters: mechanisms and
physiological control of downregulation 273
Rosine Haguenauer Tsapis and Bruno Andre 273
Abstract 273
1 Introduction 273
2 Trafficking of plasma membrane transporters along the secretory
pathway 274
2.1 ER associated events 275
2.2 Posttranslational modifications 277
2.3 ER to Golgi trafficking, and beyond 280
3 Downregulation of plasma membrane transporters and channels 281
3.1 Discovery of ubiquitin dependent internalization of yeast
plasma membrane transporters 281
3.2 Ubiquitin dependent internalization of mammalian channels 284
3.3 Mechanisms involved in the ubiquitylation of yeast plasma
membrane transporters 285
3.4 Plasma membrane to vacuole targeting of yeast transporters 290
4 Regulation of transporters and channels at membrane trafficking
levels: signals and mechanisms 296
X Table of contents
4.1 Physiological control of the rate of internalization of
transporters 296
4.2 Physiological control of the sorting and recycling of newly
synthesized transporters 301
4.3 Mechanisms and signalling pathways governing the regulated
trafficking of transporters 308
5 Conclusion 311
Acknowledgements 311
References 312
Regulated transport of the glucose transporter GLUT4 325
Hadi Al Hasani 325
Abstract 325
1 Mammalian glucose transport proteins 325
2 Insulin regulated glucose uptake 326
3 The GLUT4 translocation cycle 326
3.1 The insulin sensitive GLUT4 storage compartment 328
3.2 Retention of GLUT4 in the insulin sensitive compartment 329
3.3 Recycling of GLUT4 in heterologous cells 331
3.4 Components of GLUT4 vesicles 331
4 Signal transduction for the insulin stimulated GLUT4 translocation.... 332
4.1 The IRS PI3KAAKT aPKC pathway 333
4.2 The Cbl CAP C3G TC 10 pathway 335
5 Insulin stimulated exocytosis of GLUT4 337
6 Mechanism of GLUT4 endocytosis 338
6.1 Role of dynamin GTPase in the endocytosis of GLUT4 339
6.2 Clathrin but not caveolin mediate GLUT4 internalization 339
7 Targeting signals in GLUT4 340
8 Outlook 343
Acknowledgements 344
References 344
Abbreviations 352
Aquaporin 2 trafficking 353
Sebastian Frische, Tae Hwan Kwon, Jorgen Frakiser, and S0ren Nielsen .... 353
Abstract 353
1 Vasopressin induced AQP2 trafficking 353
1.1 Historical overview 353
1.2 Role of AQP2 phosphorylation in vasopressin stimulated AQP2
recruitment to the plasma membrane 355
1.3 Constitutive AQP2 recycling and turnover rate of AQP2 in the
plasma membrane 358
1.4 Concluding remarks on regulation mechanisms in vasopressin
controlled AQP2 trafficking 359
2 AQP2 trafficking and the cytoskeleton 360
2.1 Modulation of the actin cytoskeleton 360
Table of contents XI
2.2 Microtubules and AQP2 vesicle transport 363
3 Vasopressin induced intracellular Ca2+ signalling 364
3.1 Studies in isolated perfused IMCD s indicate a role of intracellular
Ca2+ in AQP2 trafficking 364
3.2 Ca2+ is not important for AQP2 traffic in primary cultures of
IMCD cells 366
3.3 Comparison of the results from IMCD s and primary cultured
IMCD cells 366
3.4 Which vasopressin sensitive receptors are involved in calcium
signalling in AQP2 containing collecting duct cells? 367
3.5 Myosins as targets for calcium signalling in IMCD? 368
4 Evidence for role of vesicle targeting receptors in AQP2 trafficking ....368
5 Concluding remarks 370
References 370
Abbreviations: 376
Molecules in motion: multiple mechanisms that regulate the GABA
transporter GAT1 379
Michael W. Quick 379
Abstract 379
1 Introduction 379
2 The rat brain GABA transporter GAT 1 381
2.1 Molecular properties 381
2.2 Physiological properties 382
2.3 Introduction to regulation 383
3GAT1 trafficking 384
3.1 Basal recycling of the transporter 384
3.2 Molecular mechanisms regulating GAT1 expression 388
3.3 Signaling cascades that regulate trafficking 390
4 Regulating transport 391
4.1 Intermolecular interactions 391
4.2 Transporter ligands 394
5 Summary 394
References 394
Index 401
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isbn | 3540218378 |
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spelling | Molecular mechanisms controlling transmembrane transport Hrsg. Eckhard Boles ; Hrsg. Reinhard Krämer Berlin [u.a.] Springer 2004 XV, 407 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Topics in Current Genetics 9 Biological Transport physiology Biological transport Carrier Proteins physiology Carrier proteins Cell Membrane physiology Cell membranes Genregulation (DE-588)4122166-7 gnd rswk-swf Membrantransport (DE-588)4038575-9 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Membrantransport (DE-588)4038575-9 s Genregulation (DE-588)4122166-7 s DE-604 Boles, Eckhard Sonstige oth Krämer, Reinhard Sonstige oth Topics in Current Genetics 9 (DE-604)BV035420113 9 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012824306&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Molecular mechanisms controlling transmembrane transport Topics in Current Genetics Biological Transport physiology Biological transport Carrier Proteins physiology Carrier proteins Cell Membrane physiology Cell membranes Genregulation (DE-588)4122166-7 gnd Membrantransport (DE-588)4038575-9 gnd |
subject_GND | (DE-588)4122166-7 (DE-588)4038575-9 (DE-588)4143413-4 |
title | Molecular mechanisms controlling transmembrane transport |
title_auth | Molecular mechanisms controlling transmembrane transport |
title_exact_search | Molecular mechanisms controlling transmembrane transport |
title_full | Molecular mechanisms controlling transmembrane transport Hrsg. Eckhard Boles ; Hrsg. Reinhard Krämer |
title_fullStr | Molecular mechanisms controlling transmembrane transport Hrsg. Eckhard Boles ; Hrsg. Reinhard Krämer |
title_full_unstemmed | Molecular mechanisms controlling transmembrane transport Hrsg. Eckhard Boles ; Hrsg. Reinhard Krämer |
title_short | Molecular mechanisms controlling transmembrane transport |
title_sort | molecular mechanisms controlling transmembrane transport |
topic | Biological Transport physiology Biological transport Carrier Proteins physiology Carrier proteins Cell Membrane physiology Cell membranes Genregulation (DE-588)4122166-7 gnd Membrantransport (DE-588)4038575-9 gnd |
topic_facet | Biological Transport physiology Biological transport Carrier Proteins physiology Carrier proteins Cell Membrane physiology Cell membranes Genregulation Membrantransport Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012824306&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV035420113 |
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