Here is the first effort in a single volume to cover all of the integrative functions of calcium signalling - how changes in intracellular calcium coordinate a variety of coherent cellular responses. Written by a team of internationally established researchers, Integrative Aspects of Calcium Signalling provides the latest experimental data and concepts, bringing together a detailed analysis of the events, processes, and functions regulated by calcium signalling. A unique resource for professionals and students of physiology, biophysics, neurobiology, biochemistry, and all related fields.
Here is the first effort in a single volume to cover all of the integrative functions of calcium signalling - how changes in intracellular calcium coordinate a variety of coherent cellular responses. Written by a team of internationally established researchers, Integrative Aspects of Calcium Signalling provides the latest experimental data and concepts, bringing together a detailed analysis of the events, processes, and functions regulated by calcium signalling. A unique resource for professionals and students of physiology, biophysics, neurobiology, biochemistry, and all related fields.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Introduction: Principles of Calcium Signalling.- One: Calcium Regulation of Cellular Systems.- 1. The Fate of Calcium Ions Entering a Cell: Calcium Transport through Organelles.- 2. Calcium Regulation of Cytosolic Enzymes.- 3. Function of Nuclear and Cytoplasmic Calcium in the Control of Gene Expression.- 4. Calcium Regulation of Ion Channels.- 5. Modulation of NMDA Receptor Channels by Intracellular Calcium.- 6. Regulation of InsP3R by Ca2+ and Cytosolic Ca2+ Dynamics.- 7. Regulation of Ca2+-Release Channels by Luminal Ca2+.- 8. Mitochondrial Ca2+ Signalling.- 9. Modulation of the Cytoskeletal Architecture by Calcium: A Putative Role in Plastic Synapses.- Two: Calcium Regulation of Cellular Functions.- 10. Calcium and Exocytosis.- 11. Calcium and Neuronal Development and Growth.- 12. Calcium and Cellular Death.- 13. Calcium-Dependent Signalling in Apoptosis.- 14. The Spatial Range of Dendritic Signals for Cerebellar Long-Term Depression: Studies with Local Photolysis of Caged Compounds.- 15. Calcium and Activity-Dependent Synaptic Plasticity.- 16. Ca2+ Waves as a Form of Glial Excitability.- 17. Local Control in Calcium Signalling during Cardiac E-C Coupling.
Introduction: Principles of Calcium Signalling.- One: Calcium Regulation of Cellular Systems.- 1. The Fate of Calcium Ions Entering a Cell: Calcium Transport through Organelles.- 2. Calcium Regulation of Cytosolic Enzymes.- 3. Function of Nuclear and Cytoplasmic Calcium in the Control of Gene Expression.- 4. Calcium Regulation of Ion Channels.- 5. Modulation of NMDA Receptor Channels by Intracellular Calcium.- 6. Regulation of InsP3R by Ca2+ and Cytosolic Ca2+ Dynamics.- 7. Regulation of Ca2+-Release Channels by Luminal Ca2+.- 8. Mitochondrial Ca2+ Signalling.- 9. Modulation of the Cytoskeletal Architecture by Calcium: A Putative Role in Plastic Synapses.- Two: Calcium Regulation of Cellular Functions.- 10. Calcium and Exocytosis.- 11. Calcium and Neuronal Development and Growth.- 12. Calcium and Cellular Death.- 13. Calcium-Dependent Signalling in Apoptosis.- 14. The Spatial Range of Dendritic Signals for Cerebellar Long-Term Depression: Studies with Local Photolysis of Caged Compounds.- 15. Calcium and Activity-Dependent Synaptic Plasticity.- 16. Ca2+ Waves as a Form of Glial Excitability.- 17. Local Control in Calcium Signalling during Cardiac E-C Coupling.
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