Glutamate

Storm-Mathisen, J.; Ottersen, O.P.

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Table of contents
  • Cover
  • Contentsxi
  • List of Contributorsv
  • Prefaceix
  • CHAPTER I. BIOCHEMISTRY AND ANATOMY OF TRANSMITTER GLUTAMATE1
  • 1. Introduction1
  • 2. Biochemistry of transmitter glutamate3
  • 3. Anatomical systems11
  • 4. References30
  • CHAPTER II. ASPARTATE „ NEUROCHEMICAL EVIDENCE FOR A TRANSMITTER ROLE45
  • 1. Introduction45
  • 2. Is aspartate localized in nerve terminals?45
  • 3. Is aspartate released by exocytosis from nerve endings?47
  • 4. Is aspartate localized in synaptic vesicles?51
  • 5. Is aspartate released from a separate pool of nerve endings?52
  • 6. The role of the released aspartate53
  • 7. Putative aspartatergic neuronal pathways54
  • 8. References57
  • CHAPTER III. METABOTROPIC GLUTAMATE RECEPTORS „ IMMUNOCYTOCHEMICAL AND IN SITU HYBRIDIZATION ANALY63
  • 1. Introduction63
  • 2. Regional and cellular localization of metabotropic glutamate receptors65
  • 3. Differential subcellular localization of metabotropic glutamate receptors in relation to transmit87
  • 4. Abbreviations90
  • 5. Acknowledgements91
  • 6. References91
  • CHAPTER IV. AMPA, KAINATE AND NMDA IONOTROPIC GLUTAMATE RECEPTOR EXPRESSION „ AN IN SITU HYBRIDIZA99
  • 1. Introduction99
  • 2. AMPA and kainate receptors99
  • 3. NMDA receptors104
  • 4. RNA editing111
  • 5. Retina111
  • 6. Neocortex113
  • 7. Hippocampus119
  • 8. Caudate putamen126
  • 9. Cerebellum129
  • 10. Spinal cord133
  • 11. Acknowledgements137
  • 12. References137
  • CHAPTER V. REGIONAL AND SYNAPTIC EXPRESSION OF IONOTROPIC GLUTAMATE RECEPTORS145
  • 1. Introduction145
  • 2. Regional distribution145
  • 3. Neuronal distribution158
  • 4. Distribution in glia173
  • 5. References174
  • CHAPTER VI. TARGETING AND ANCHORING OF GLUTAMATE RECEPTORS AND ASSOCIATED SIGNALING MOLECULES183
  • 1. Introduction183
  • 2. NMDA receptors183
  • 3. AMPA receptors190
  • 4. Kainate receptors and δ receptors193
  • 5. Metabotropic glutamate receptors193
  • 6. Concluding comments: comparing glutamate receptors195
  • 7. Acknowledgements196
  • 8. References197
  • CHAPTER VII. ENZYMES RESPONSIBLE FOR GLUTAMATE SYNTHESIS AND DEGRADATION203
  • 1. Introduction203
  • 2. Distribution of glutaminase in the nervous system204
  • 3. Glutamate synthesis and metabolism in glial cells219
  • 4. Glutamate and AAT in GABA synthesis221
  • 5. Concluding remarks225
  • 6. Acknowledgements227
  • 7. References227
  • CHAPTER VIII. SODIUM-AND POTASSIUM-DEPENDENT EXCITATORY AMINO ACID TRANSPORTERS IN BRAIN PLASMA MEMB231
  • 1. Introduction231
  • 2. Glutamate transporter types232
  • 3. Mechanism of glutamate uptake232
  • 4. Localization of glutamate transporters233
  • 5. Regulation of glutamate uptake241
  • 6. The role of glutamate uptake in synaptic transmission243
  • 7. Concluding remarks245
  • 8. Abbreviations246
  • 9. Acknowledgements246
  • 10. References246
  • CHAPTER IX. GLUTAMATE NEUROTRANSMISSION IN THE MAMMALIAN INNER EAR255
  • 1. Introduction255
  • 2. Glutamate in hair cells255
  • 3. A glutamate-glutamine cycle in the inner ear? glutamine synthetase and glutamate transporters258
  • 4. Distribution of phosphate-activated glutaminase in the inner ear260
  • 5. Glutamate release262
  • 6. Glutamate receptors262
  • 7. Pathology of the glutamatergic synapse266
  • 8. Conclusion267
  • 9. Acknowledgements268
  • 10. References268
  • CHAPTER X. A MODEL GLUTAMATE SYNAPSE „ THE LAMPREY GIANT RETICULOSPINAL AXON273
  • 1. Introduction273
  • 2. The lamprey reticulospinal synapse „ an overview273
  • 3. Organization of the reticulospinal axon274
  • 4. Synaptic localization of glutamate and related amino acids276
  • 5. Synaptic vesicle pools279
  • 6. Presynaptic ca2+ channels279
  • 7. Presynaptic modulation of transmitter release281
  • 8. Synaptic vesicle recycling284
  • 9. Molecular mechanisms in synaptic vesicle endocytosis286
  • 10. Conclusions286
  • 11. References287
  • Subject Index289
Book details
  • Vendor Elsevier S & T
  • SKU 9780444502865
  • ISBN-13 9780080532578
  • Author Storm-Mathisen, J.; Ottersen, O.P.
  • Category Medical
  • Subject Neuroscience

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The volume presents a comprehensive and up-to-date treatise of the glutamatergic synapse and its environment. Particular emphasis is on the localizations of the molecular constituents of the synaptic machinery. Immunogold and other high-resolution methods are used extensively. Each chapter presents new data that have not previously been reviewed. The material presented forms the basis for work directed to understanding the functional properties of excitatory synapses in greater depth, to discover mechanisms of neurological and psychiatric disorders and novel methods for treatment.
Chapter 1 deals with the transmitter molecule itself, mechanisms of release and pathways for glutamate synthesis. The anatomy of glutamatergic nerve projection pathways in different brain regions is dealt with. In Chapter 2, focus is on aspartate, the enigmatic congener of glutamate, and its possible role in excitatory neurotransmission. Chapters 3 through 6 deal with glutamate receptors. Metabotropic glutamate receptors are presented in Chapter 3. Chapter 4 presents an in situ hybridization atlas of the different classes of ionotropic glutamate receptors. The localizations of these receptors at the regional and synaptic level are presented in Chapter 5. The ways in which the receptors are brought to the synapse and held in position are the subject of Chapter 6. Chapter 7 deals with the enzymes responsible for formation and catabolism of glutamate. In Chapter 8, the regulation of extracellular glutamate levels by glutamate transporters is discussed. The final two chapters of the volume focus on two "model synapses" that, due to special features, lend themselves particularly well to demonstrating properties of glutamatergic synapses. The hair cell-to-afferent nerve terminal synapses in the inner ear (Chapter 9), with their supporting cells, share essential properties with glutamatergic synapses in the central nervous system. The salient features of the latter are illustrated by the synapses of the giant reticulo-spinal axons of the lamprey, used to unravel molecular mechanisms of the cycling of synaptic vesicles (Chapter 10).