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1.
PLoS One ; 7(7): e40674, 2012.
Article in English | MEDLINE | ID: mdl-22815787

ABSTRACT

During nervous system development different cell-to-cell communication mechanisms operate in parallel guiding migrating neurons and growing axons to generate complex arrays of neural circuits. How such a system works in coordination is not well understood. Cross-regulatory interactions between different signalling pathways and redundancy between them can increase precision and fidelity of guidance systems. Immunoglobulin superfamily proteins of the NCAM and L1 families couple specific substrate recognition and cell adhesion with the activation of receptor tyrosine kinases. Thus it has been shown that L1CAM-mediated cell adhesion promotes the activation of the EGFR (erbB1) from Drosophila to humans. Here we explore the specificity of the molecular interaction between L1CAM and the erbB receptor family. We show that L1CAM binds physically erbB receptors in both heterologous systems and the mammalian developing brain. Different Ig-like domains located in the extracellular part of L1CAM can support this interaction. Interestingly, binding of L1CAM to erbB enhances its response to neuregulins. During development this may synergize with the activation of erbB receptors through L1CAM homophilic interactions, conferring diffusible neuregulins specificity for cells or axons that interact with the substrate through L1CAM.


Subject(s)
Immunoglobulins/chemistry , Neural Cell Adhesion Molecule L1/chemistry , Neural Cell Adhesion Molecule L1/metabolism , Neuregulins/pharmacology , Receptor, ErbB-2/metabolism , Receptor, ErbB-3/metabolism , Signal Transduction/drug effects , Animals , Cell Adhesion/drug effects , HEK293 Cells , Humans , MCF-7 Cells , Phosphorylation/drug effects , Protein Binding/drug effects , Protein Structure, Tertiary , Rats , Repetitive Sequences, Amino Acid , Structure-Activity Relationship
2.
Mol Cell Neurosci ; 28(1): 141-52, 2005 Jan.
Article in English | MEDLINE | ID: mdl-15607949

ABSTRACT

L1- and NCAM-type cell adhesion molecules represent distinct protein families that function as specific receptors for different axon guidance cues. However, both L1 and NCAM proteins promote axonal growth by inducing neuronal tyrosine kinase activity and are coexpressed in subsets of axon tracts in arthropods and vertebrates. We have studied the functional requirements for the Drosophila L1- and NCAM-type proteins, Neuroglian (Nrg) and Fasciclin II (FasII), during postembryonic sensory axon guidance. The rescue of the Neuroglian loss-of-function (LOF) phenotype by transgenically expressed L1- and NCAM-type proteins demonstrates a functional interchangeability between these proteins in Drosophila photoreceptor pioneer axons, where both proteins are normally coexpressed. In contrast, the ectopic expression of Fasciclin II in mechanosensory neurons causes a strong enhancement of the axonal misguidance phenotype. Moreover, our findings demonstrate that this functionally redundant specificity to mediate axon guidance has been conserved in their vertebrate homologs, L1-CAM and NCAM.


Subject(s)
Cell Adhesion Molecules, Neuronal/genetics , Drosophila/embryology , Growth Cones/metabolism , Nervous System/embryology , Neurons, Afferent/metabolism , Animals , Cell Adhesion Molecules, Neuronal/metabolism , Cell Communication/genetics , Drosophila/genetics , Drosophila/metabolism , Drosophila Proteins , Eye/cytology , Eye/embryology , Eye/metabolism , Gene Expression Regulation, Developmental/genetics , Growth Cones/ultrastructure , Mechanoreceptors/cytology , Mechanoreceptors/embryology , Mechanoreceptors/metabolism , Nervous System/cytology , Nervous System/metabolism , Neural Cell Adhesion Molecule L1/genetics , Neural Cell Adhesion Molecule L1/metabolism , Neural Cell Adhesion Molecules/genetics , Neural Cell Adhesion Molecules/metabolism , Neurons, Afferent/cytology , Phenotype , Photoreceptor Cells, Invertebrate/cytology , Photoreceptor Cells, Invertebrate/embryology , Photoreceptor Cells, Invertebrate/metabolism , Transgenes/genetics , Wings, Animal/cytology , Wings, Animal/embryology
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