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Publications by Vladimir Sytnyk
Clustering of the Neural Cell Adhesion Molecule (NCAM) at the Neuronal Cell Surface Induces Caspase-8- And -3-Dependent Changes of the Spectrin Meshwork Required for NCAM-mediated Neurite Outgrowth
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
Cell Adhesion Molecule Close Homolog of L1 (CHL1) Guides the Regrowth of Regenerating Motor Axons and Regulates Synaptic Coverage of Motor Neurons
Frontiers in Molecular Neuroscience
Molecular Neuroscience
Molecular Biology
Cellular
Related publications
Transmembrane Neural Cell-Adhesion Molecule (NCAM), but Not Glycosyl-Phosphatidylinositol-Anchored NCAM, Down-Regulates Secretion of Matrix Metalloproteinases.
Proceedings of the National Academy of Sciences of the United States of America
Multidisciplinary
Neural Cell Adhesion Molecule (NCAM) Marks Adult Myogenic Cells Committed to Differentiation
Experimental Cell Research
Cell Biology
The Neural Cell Adhesion Molecule F3: An Axonal Glycoprotein Promoting Neurite Outgrowth.
Trends in Glycoscience and Glycotechnology
Biochemistry
Organic Chemistry
NCAM-180, the Large Isoform of the Neural Cell Adhesion Molecule of the Mouse, Is Encoded by an Alternatively Spliced Transcript
Nucleic Acids Research
Genetics
Functional Consequences of the Interactions Among the Neural Cell Adhesion Molecule NCAM, the Receptor Tyrosine Kinase TrkB, and the Inwardly Rectifying K+Channel KIR3.3
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
Neuronal Plasminogen Activators: Cell Surface Binding Sites and Involvement in Neurite Outgrowth
Journal of Neuroscience
Neuroscience
Neuroglian-Mediated Cell Adhesion Induces Assembly of the Membrane Skeleton at Cell Contact Sites
Journal of Cell Biology
Medicine
Cell Biology
Müller Cell-Mediated Neurite Outgrowth of the Retinal Ganglion Cells via P2Y6receptor Signals
Journal of Neurochemistry
Biochemistry
Molecular Neuroscience
Cellular
Thrombin Perturbs Neurite Outgrowth and Induces Apoptotic Cell Death in Enriched Chick Spinal Motoneuron Cultures Through Caspase Activation
Journal of Neuroscience
Neuroscience