Journal of Neuroscience · 2012 · 34 citations · 49 references
Synapse FormationCell AdhesionClassical CadherinsN-cadherin Prodomain ProcessingCytoskeletonCellular PhysiologySocial SciencesSignaling PathwayCell InteractionCell SignalingMolecular NeuroscienceCell BiologySignal TransductionDevelopmental BiologyNeuroscienceCns SynapseIntracellular TraffickingMedicineExtracellular Matrix
Classical cadherins, which are adhesion molecules functioning at the CNS synapse, are synthesized as adhesively inactive precursor proteins in the endoplasmic reticulum (ER). Signal sequence and prodomain cleavage in the ER and Golgi apparatus, respectively, activates their adhesive properties. Here, we provide the first evidence for sorting of nonadhesive precursor N-cadherin (ProN) to the neuronal surface, where it coexists with adhesively competent mature N-cadherin (N-cad), generating a spectrum of adhesive strengths. In cultured hippocampal neurons, a high ProN/N-cad ratio downregulates synapse formation. Neurons expressing genetically engineered uncleavable ProN make markedly fewer synapses. The synapse number can be rescued to normality by depleting surface ProN levels through prodomain cleavage by an exogenous protease. Finally, prodomain processing is developmentally regulated in the rat hippocampus. We conclude that it is the ProN/N-cad ratio and not mature N-cad alone that is critical for regulation of adhesion during synaptogenesis.
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Naoshige Uchida, Yasuyuki Honjo, Keith R. Johnson et al. · The Journal of Cell Biology · 1996 · 499 citations · Full text
Interneuronal Synapses, Synaptic Junctions, Catenin/cadherin Adhesion System +24
Sean S. Molloy, Laurel Thomas, Judy K. VanSlyke et al. · The EMBO Journal · 1994 · 493 citations · Full text
Cadherin Regulates Dendritic Spine Morphogenesis
Hideru Togashi, Kentaro Abe, Akira Mizoguchi et al. · Neuron · 2002 · 487 citations · Full text
Developmental Biology, Molecular Neuroscience, Cell Interaction +2