Lipid metabolism and membrane biogenesis: with 8 tables
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2004
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Schriftenreihe: | Topics in current genetics
6 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XV, 406 S. graph. Darst. : 24 cm |
ISBN: | 354020752X |
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Datensatz im Suchindex
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adam_text | Table of contents
Introduction: Lipids: cellular glue... or are they more than that? 1
Giinther Daum 1
1 Phospholipid synthesis in mammalian cells 5
Christopher R. McMaster and Trevor R. Jackson 5
Abstract 5
1.1 Introduction 5
1.2 Phospholipid biosynthetic pathways 6
1.2.1 Synthesis of the glycerol backbone 6
1.2.2 Transfer of the glycerol backbone to the membrane 6
1.2.3 Partitioning of phospholipid biosynthetic pathways 10
1.2.4 Phosphatidylcholine synthesis 12
1.2.5 Phosphatidylethanolamine synthesis 18
1.2.6 Phosphatidylserine synthesis 20
1.2.7 Phosphatidylglycerol and cardiolipin synthesis 22
1.3 Phosphatidylinositol and its phosphorylated derivatives: the
phosphoinositides 26
1.3.1 Phosphatidylinositol 27
1.3.2 Phosphatidylinositol phosphates 28
1.3.3 Phosphatidylinositol 4 phosphate 28
1.3.4 Phosphatidylinositol 3 phosphate 30
1.3.4 Phosphatidylinositol 5 phosphate 33
1.3.5 Phosphatidylinositol bisphosphates 36
1.3.6 Phosphatidylinositol 4,5 bisphosphate 36
1.3.7 Phosphatidylinositol 3,4 bisphosphate 43
1.3.8 Phosphatidylinositol 3,5 bisphosphate 45
1.3.9 Phosphatidylinositol 3,4,5 trisphosphate 47
1.3.10 Phosphoinositide transfer proteins 53
1.4 Conclusions 53
Acknowledgements 54
References 54
2 Phospholipid synthesis and dynamics in plant cells 89
Jean Jacques Bessoule and Patrick Moreau 89
Abstract 89
2.1 Introduction 89
2.2 Phospholipid synthesis in the ER and the secretory pathway 90
2.2.1 PA and DAG synthesis 90
2.2.2 PE synthesis 91
2.2.3 PC synthesis 93
2.2.4 Synthesis of PG, PI, and PS 97
2.3 Phospholipid dynamics in the secretory pathway 99
2.3.1 Phospholipid composition of membranes of the secretory
pathway 99
2.3.2 Various mechanisms in phospholipid transport and dynamics 99
2.3.3 Membrane domains in plant cells 101
2.4 Phospholipids of plastids, mitochondria, and glyoxysomes 102
2.4.1 Nature and some functions of plastid phospholipids 102
2.4.2 Plastid phospholipid biosynthesis 104
2.4.3 Phospholipid trafficking between ER and organelles 106
2.4.4 From the chloroplast envelope to thylakoids 107
2.4.5 Mitochondria and glyoxysomes 108
2.5 Conclusion 109
Acknowledgments: 110
References 110
Abbreviations 123
3 Biogenesis and cellular dynamics of glycerophospholipids in the yeast
Saccharomyces cerevisiae 125
Ruth Nebauer, Ruth Birner Grunberger, Giinther Daum 125
Abstract 125
3.1 Introduction 125
3.2 Biogenesis and function of glycerophospholipids 127
3.2.1Phosphatidicacid 127
3.2.2 Aminoglycerophospholipids 131
3.2.3 Phosphatidylinositol 139
3.2.4 Phosphatidylglycerol and cardiolipin 145
3.3 Lipid dynamics and membrane assembly 147
3.3.1 Sorting of glycerophospholipid species 147
3.3.2 The possible role of lipid transfer proteins in intracellular lipid
transport 150
3.4 Conclusions and perspectives 151
Acknowledgments 152
References 152
Abbreviations 168
4 Defects in cholesterol biosynthesis 169
Gene C. Ness 169
Abstract 169
4.1 Introduction 169
4.2 Smith Lemli Opitz syndrome 170
4.2.1 3|3 Hydroxysteroid A7 reductase 172
4.2.2 Cholesterol deficiency or 7DHC excess? 172
4.2.3 Animal models 173
4.2.4 Treatment 173
4.3 Desmosterolosis 174
4.3.1 Lathosterolosis 175
4.4 X linked dominant chondrodysplasia punctata 2 175
4.5 CHILD syndrome 176
4.6 Hydrops ectopic calcification moth eaten skeletal dysplasia 176
4.7 Antley Bixler syndrome 176
4.8 Mevalonic aciduria 177
4.9 Commonalities 178
Acknowledgement 178
References 178
Abbreviations 182
5 Sterol metabolism and functions in higher plants 183
Marie Andree Hartmann 183
Abstract 183
5.1 Introduction 183
5.2 Sterol structural diversity and occurrence in higher plants 184
5.3 Biosynthesis 187
5.3.1 IPP biosynthesis 187
5.3.2 Sterol biosynthesis from IPP to sterol end products 188
5.3.3 Sites of biosynthesis 189
5.4 Functions 190
5.4.1 Structural roles as membrane components 191
5.4.2 Plant sterols as effectors of membrane bound proteins 192
5.4.3 Roles in plant growth and development 192
5.5 Control of the sterol biosynthetic pathway 194
5.5.1 Sterol metabolism as a part of a multi branched pathway 194
5.5.2 How to investigate regulatory patterns of sterol biosynthesis?.... 195
5.5.3 Control of the carbon flux toward sterol end products 196
5.5.4. Changes in sterol metabolism in response to
environmental cues 199
5.6 Membrane biogenesis 200
5.6.1 Intracellular distribution and transport of free sterols 201
5.6.2 Relationships between sterol and other lipid biosynthetic
pathways 202
5.7 Concluding remarks 203
References 203
Abbreviations 211
6 Sterol biochemistry and regulation in the yeast Saccharomyces cerevisiae2l3
N. Douglas Lees and Martin Bard 213
Abstract 213
6.1 Introduction 213
6.2 The sterol mevalonate biosynthetic pathway 215
6.3 The dedicated branch of the sterol biosynthetic pathway 216
6.4 Cloning and characterization of C 4 demethylation genes 219
6.5 Suppression studies of erg25 mutants: two suppressor mutations
are required 223
6.6 The latter part of the sterol biosynthetic pathway: non essential
genes 224
6.7 Sterol enzyme localization 225
6.8 Sterol esterification 227
6.9 Sterol functions in yeast 228
6.10 Sterol and heme biosynthesis are intertwined 230
6.11 Transcription factors affecting ergosterol biosynthetic genes 232
6.12 Future prospects 233
Acknowledgements 233
References 234
7 Mammalian AC AT and DGAT2 gene families 241
Dong Cheng, Jay Liu, Catherine C.Y. Chang, and Ta Yuan Chang 241
Abstract 241
7.1 Introduction 241
7.2 Enzymatic activities of ACAT, DGAT, and MGAT 242
7.3 The ACAT and DGAT2 gene families 243
7.3.1 ACAT gene family: ACAT1, ACAT2, and DGAT1 243
7.3.2 DGAT2 gene family: DGAT2, MGAT1, MGAT2 and MGAT3 244
7.4 Gene structure, tissue distribution, and transcriptional regulation 247
7.4.1 Gene structure and mRNA species 247
7.4.2 Tissue distribution 247
7.4.3 Transcriptional regulation 248
7.5 Membrane topology and allosteric regulation of ACAT 249
7.6 Lipoprotein metabolism and the involvement of ACAT, DGAT, and
MGAT enzymes 251
7.7 Atherosclerosis, cholesterol metabolism, and ACAT enzymes 254
7.7.1 ACAT and hypercholesterolemia in rodent models 254
7.7.2 ACAT and atherosclerosis in knockout mouse studies 255
7.8 Energy homeostasis, insulin sensitivity, and DGAT1 255
7.9 ACAT inhibitors 256
References 258
8 Biosynthesis and compartmentation of triacylglycerol in higher plants... 267
Frederic Beaudoin and Johnathan A. Napier 267
Abstract 267
8.1 Introduction 267
8.2 Biosynthesis of triacylglycerols in developing seeds 268
8.2.1 The acyl CoA dependent pathway (the Kennedy pathway) 268
8.2.2 Acyl CoA independent pathway 273
8.3 The oil body; an organelle specialised in TAG deposition, storage,
and mobilisation 275
8.4 Oleosin targeting to the oil body via the ER membrane 278
8.4.1 Oleosins are co tranlastionally targeted to, and inserted
into, the ER membrane 278
8.4.2 Identification of targeting signals and topogenic sequences in
oleosins 279
8.4.3 Insertion of oleosins into the ER membrane 280
8.5 In developing oilseed embryos a subdomain of the ER is
specialised in oil body biogenesis 281
8.6 Conclusion and future prospects 282
Acknowledgements 283
References 283
9 Mechanisms and mediators of neutral lipid biosynthesis in
eukaryotic cells 289
Peter M. Oelkers and Stephen L. Sturley 289
Abstract 289
9.1 Introduction: an overview of neutral lipid homeostasis 289
9.2 The enzymes for sterol esterification are conserved from yeast to
humans 291
9.3 Pathways and enzymes for diacylglycerol esterification in yeast 294
9.4 Pathways and enzymes for acylglycerol esterification in metazoans ..296
9.5 Acyl CoA monoacylglycerol acyltransferases (MGATs) 300
9.6 Consequences of loss of neutral lipid biosynthesis in smaller
eukaryotes 301
9.7 Consequences of loss of neutral lipid biosynthesis in mammals 302
9.8 Pathways and enzymes for long chain alcohol esterification 304
9.9 Conclusion 304
Acknowledgements 305
References 305
Abbreviations 311
10 Sphingosine 1 phosphate metabolism in mammalian cell signalling 313
Herve Le Stunff, Sylvie Coursol, Sheldon Milstien, and Sarah Spiegel 313
Abstract 313
10.1 Introduction 313
10.2 Sphingolipid metabolism 315
10.3 Sphingosine kinase 317
10.3.1 Characterization of mammalian SphKs 317
10.3.2 Mechanisms of activation of SphKs 318
10.4 Cellular functions of SPHKs 321
10.4.1 Cell growth 321
10.4.2 Cell survival 322
10.4.3 Calcium homeostasis 322
10.4.4 Immune responses 323
10.4.5 Cell motility 323
10.4.6 Sphingosine kinase in plants 324
10.5 Sphingosone 1 phosphate phosphohydrolases 324
10.5.1 Characterization of mammalian S1P phosphohydrolases 324
10.5.2 Cellular functions of mammalian SIP phosphohydrolases 325
10.6 Sphingosine 1 phosphate lyase 327
10.6.1 Characterization of a mammalian SPL 327
10.6.2 Cellular functions of mammalian SPL 327
10.7 Summary and perspectives 328
Acknowledgements 328
References 329
ABBREVIATIONS 334
11 Plant sphingolipids 337
Petra Sperling, Dirk Warnecke, and Ernst Heinz 337
Abstract 337
11.1 Introduction 337
11.2 Diversity of plant sphingolipids 338
11.2.1 Long chain sphingobases 338
11.2.2 Ceramides 340
11.2.3 Glycosylceramides 341
11.2.4 Phosphosphingolipids and GIPC anchors of membrane
proteins 345
11.3 Genes controlling sphingolipid metabolism in plants 351
11.3.1 Serine palmitoyltransferase 353
11.3.3 Sphingolipid C4 hydroxylase 356
11.3.4 Ceramide synthase 356
11.3.5 Genes involved in VLCFA biosynthesis 356
11.3.6 Ceramidase 356
11.3.7 Fatty acyl amide a hydroxylase 357
11.3.8 Sphingolipid A4 desaturase 357
11.3.9 Sphingolipid A8 desaturase 357
11.3.10 Fatty acid n 9 desaturation 358
11.3.11 Glucosylceramide synthase 358
11.3.12 LCB kinase, ceramide kinase 358
11.3.13 LCB 1 phosphate phosphatase 359
11.3.14 LCB 1 phosphate lyase 359
11.3.15 Synthesis of oligoglycosylceramides, PSL and
GIPC anchors 359
11.4 Emerging functions of sphingolipids in plants 360
11.4.1 Plant sphingolipids in human health 361
11.4.2 Lipid rafts and protein anchoring 362
11.4.3 Cell signalling 362
11.4.4 Trigger of cell death 364
11.4.5 Plant pathogen interactions 365
11.4.6 Abiotic stress response 366
11.4.7 Glucosylceramides and membrane transport 367
Acknowledgements 368
References 368
Abbreviations: 380
12 Baker s Yeast: a rising foundation for eukaryotic sphingolipid
mediated cell signaling 383
L. Ashley Cowart and Yusuf A. Hannun 383
Abstract 383
12.1 Introduction 383
12.2 Sphingolipid metabolism 385
12.3 Biological roles of sphingolipids 388
12.3.1 Sphingoid bases 388
12.3.2 Sphingoid base phosphates 390
12.3.3 Ceramide 391
12.3.4 Complex sphingolipids 392
12.3.5 Other emerging functions and speculations 394
12.4 Conclusions 395
References 395
Index 403
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spelling | Lipid metabolism and membrane biogenesis with 8 tables Günther Daum (ed.) Berlin [u.a.] Springer 2004 XV, 406 S. graph. Darst. : 24 cm txt rdacontent n rdamedia nc rdacarrier Topics in current genetics 6 Literaturangaben Biomembran - Biogenese - Lipidstoffwechsel Biogenese (DE-588)4006799-3 gnd rswk-swf Lipidstoffwechsel (DE-588)4035875-6 gnd rswk-swf Biomembran (DE-588)4006884-5 gnd rswk-swf Biomembran (DE-588)4006884-5 s Biogenese (DE-588)4006799-3 s Lipidstoffwechsel (DE-588)4035875-6 s DE-604 Daum, Günther Sonstige oth Topics in current genetics 6 (DE-604)BV035420113 6 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010652616&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Lipid metabolism and membrane biogenesis with 8 tables Topics in current genetics Biomembran - Biogenese - Lipidstoffwechsel Biogenese (DE-588)4006799-3 gnd Lipidstoffwechsel (DE-588)4035875-6 gnd Biomembran (DE-588)4006884-5 gnd |
subject_GND | (DE-588)4006799-3 (DE-588)4035875-6 (DE-588)4006884-5 |
title | Lipid metabolism and membrane biogenesis with 8 tables |
title_auth | Lipid metabolism and membrane biogenesis with 8 tables |
title_exact_search | Lipid metabolism and membrane biogenesis with 8 tables |
title_full | Lipid metabolism and membrane biogenesis with 8 tables Günther Daum (ed.) |
title_fullStr | Lipid metabolism and membrane biogenesis with 8 tables Günther Daum (ed.) |
title_full_unstemmed | Lipid metabolism and membrane biogenesis with 8 tables Günther Daum (ed.) |
title_short | Lipid metabolism and membrane biogenesis |
title_sort | lipid metabolism and membrane biogenesis with 8 tables |
title_sub | with 8 tables |
topic | Biomembran - Biogenese - Lipidstoffwechsel Biogenese (DE-588)4006799-3 gnd Lipidstoffwechsel (DE-588)4035875-6 gnd Biomembran (DE-588)4006884-5 gnd |
topic_facet | Biomembran - Biogenese - Lipidstoffwechsel Biogenese Lipidstoffwechsel Biomembran |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010652616&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV035420113 |
work_keys_str_mv | AT daumgunther lipidmetabolismandmembranebiogenesiswith8tables |