This book examines the role of key components in the exocytotic process, not only in neuronal and endocrine cells but in a variety of other relevant cell systems. So far, because of the large number of components involved, understanding of the molecular basis of exocytosis has remained the privilege of a relatively small group of specialists. The book collects up-to-date reviews from the forefront of this fascinating and rapidly evolving field.
This book examines the role of key components in the exocytotic process, not only in neuronal and endocrine cells but in a variety of other relevant cell systems. So far, because of the large number of components involved, understanding of the molecular basis of exocytosis has remained the privilege of a relatively small group of specialists. The book collects up-to-date reviews from the forefront of this fascinating and rapidly evolving field. Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Exocytosis: Lessons from SNARE Mutants and Friends.- Regulation of SNARE Complex Assembly by Second Messengers: Roles of Phospholipases, Munc13 and Munc18.- Rab GTPases and Their Role in the Control of Exocytosis.- The Role of Synaptotagmin and Synaptotagmin-Like Protein (Slp) in Regulated Exocytosis.- The Synapsins and the Control of Neuroexocytosis.- Phospholipase D: A Multi-Regulated Lipid-Modifying Enzyme Involved in the Late Stages of Exocytosis.- Lipid Rafts as Regulators of SNARE Activity and Exocytosis.- Mast Cells as a Model of Nonneuroendocrine Exocytosis.- Acrosomal Exocytosis.- Nonsecretory, Regulated Exocytosis: A Multifarious Mechanism Employed by Cells to Carry Out a Variety of Functions.- Adaptation of the Secretory Machinery to Pathophysiological Conditions
Exocytosis.- Regulation of SNARE Complex Assembly by Second Messengers.- Rab GTPases and Their Role in the Control of Exocytosis.- The Role of Synaptotagmin and Synaptotagmin-Like Protein (Slp) in Regulated Exocytosis.- The Synapsins and the Control of Neuroexocytosis.- Phospholipase D.- Lipid Rafts as Regulators of SNARE Activity and Exocytosis.- Mast Cells as a Model of Nonneuroendocrine Exocytosis.- Acrosomal Exocytosis.- Nonsecretory, Regulated Exocytosis.- Adaptation of the Secretory Machinery to Pathophysiological Conditions.
Exocytosis: Lessons from SNARE Mutants and Friends.- Regulation of SNARE Complex Assembly by Second Messengers: Roles of Phospholipases, Munc13 and Munc18.- Rab GTPases and Their Role in the Control of Exocytosis.- The Role of Synaptotagmin and Synaptotagmin-Like Protein (Slp) in Regulated Exocytosis.- The Synapsins and the Control of Neuroexocytosis.- Phospholipase D: A Multi-Regulated Lipid-Modifying Enzyme Involved in the Late Stages of Exocytosis.- Lipid Rafts as Regulators of SNARE Activity and Exocytosis.- Mast Cells as a Model of Nonneuroendocrine Exocytosis.- Acrosomal Exocytosis.- Nonsecretory, Regulated Exocytosis: A Multifarious Mechanism Employed by Cells to Carry Out a Variety of Functions.- Adaptation of the Secretory Machinery to Pathophysiological Conditions
Exocytosis.- Regulation of SNARE Complex Assembly by Second Messengers.- Rab GTPases and Their Role in the Control of Exocytosis.- The Role of Synaptotagmin and Synaptotagmin-Like Protein (Slp) in Regulated Exocytosis.- The Synapsins and the Control of Neuroexocytosis.- Phospholipase D.- Lipid Rafts as Regulators of SNARE Activity and Exocytosis.- Mast Cells as a Model of Nonneuroendocrine Exocytosis.- Acrosomal Exocytosis.- Nonsecretory, Regulated Exocytosis.- Adaptation of the Secretory Machinery to Pathophysiological Conditions.
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