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Serine Proteases and Their Serpin Inhibitors in the Nervous System: Regulation in Development and in Degenerative and Malignant Disease (Nato Science Series A:, 191)

معرفی کتاب «Serine Proteases and Their Serpin Inhibitors in the Nervous System: Regulation in Development and in Degenerative and Malignant Disease (Nato Science Series A:, 191)» نوشتهٔ John W. Fenton II (auth.), Barry W. Festoff M.D., Daniel Hantaï M.D., Ph.D. (eds.)، منتشرشده توسط نشر Springer New York در سال 1990. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Front Matter....Pages i-xxv Front Matter....Pages 1-1 Thrombin Structural Regions in Determining Bioregulatory Functions....Pages 3-7 Regulation and Control of the Fibrinolytic System....Pages 9-20 A Key Molecule Dictating and Regulating Surface Plasmin Formation : The Receptor for Urokinase Plasminogen Activator....Pages 21-30 Regulation of Tissue Plasminogen Activator Secretion from Human Endothelial Cells....Pages 31-39 Thrombin Disintegrates Cell Surface Urokinase Focal Adhesion Plaques and Decreases Cell Extension: Implications for Axonal Growth....Pages 41-50 Structure and Function of Tissue-Type Plasminogen Activator....Pages 51-68 The Heparin Binding Site and Activation of Protease Nexin I....Pages 69-78 Polypeptide Chain Structure of Inter-α-Trypsin Inhibitor and Pre-α-Trypsin Inhibitor: Evidence for Chain Assembly by Glycan and Comparison with other “Kunin”-Containing Proteins....Pages 79-91 Regulation of Protease Nexin-1 Activity and Target Protease Specificity by the Extracellular Matrix....Pages 93-102 Front Matter....Pages 103-103 Induction of the Urokinase-Type Plasminogen Activator Gene by Cytoskeleton-Disrupting Agents....Pages 105-114 Use of Protein Chemistry and Molecular Biology to Determine Interaction Areas Between Proteases and their Inhibitors: The Thrombin-Hirudin Interaction as an Example....Pages 115-126 Signal Transduction Chains Involved in the Control of the Fibrinolytic Enzyme Cascade....Pages 127-135 Rodent Serpins : Accelerated Evolution and Novel Specificities....Pages 137-145 Structure of the Human Protease Nexin Gene and Expression of Recombinant Forms of PN-I....Pages 147-161 Evolutionary Adaptations of Serpins and their Use in Designing New Proteinase Inhibitors....Pages 163-170 Front Matter....Pages 171-171 Plasminogen Activator in the Developing Nervous System....Pages 173-184 Multiple Roles for Plasminogen Activator System in Nervous System Development....Pages 185-197 Interaction of Plasminogen Activators with the Neuronal Surface....Pages 199-208 Glial Plasminogen Activators in Developing and Regenerating Neural Tissue....Pages 209-217 Plasminogen Activators in Development, Injury and Pathology of the Neuromuscular System....Pages 219-228 Front Matter....Pages 171-171 Relationship Between Plasminogen Activators and Regeneration Capacities of Rat Skeletal Muscles....Pages 229-241 Front Matter....Pages 243-243 A Cascade Approach to Synapse Formation Based on Thrombogenic and Fibrinolytic Models....Pages 245-253 Localized Extracellular Proteolysis May Convey Inductive Signals Between Nerve and Muscle Cells During Synaptogenesis....Pages 255-273 Steps in Establishing a Biological Relevance for Glia-Derived Nexin....Pages 275-281 Front Matter....Pages 283-283 Protease Inhibitors in Neurologic Diseases....Pages 285-291 Presence and Significance of α 1 -Antitrypsin in Human Brain Tumors....Pages 293-299 Serpins and Brain Tumors: Roles in Pathogenesis....Pages 301-311 A Serine Protease Inhibitor Domain Encoded Within the Alzheimer Disease-Associated Amyloid ß -Protein Precursor Gene....Pages 313-319 The Serpin, α 1 -Antichymotrypsin, in Brain Aging and Diseases of the Nervous System....Pages 321-327 Protease Nexin I Immunostaining in Alzheimer’s Disease....Pages 329-336 Back Matter....Pages 337-359
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