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      Neural Cell Adhesion Molecule 2 Promotes the Formation of Filopodia and Neurite Branching by Inducing Submembrane Increases in Ca 2+ Levels

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          Abstract

          Changes in expression of the neural cell adhesion molecule 2 (NCAM2) have been proposed to contribute to neurodevelopmental disorders in humans. The role of NCAM2 in neuronal differentiation remains, however, poorly understood. Using genetically encoded Ca 2+ reporters, we show that clustering of NCAM2 at the cell surface of mouse cortical neurons induces submembrane [Ca 2+] spikes, which depend on the L-type voltage-dependent Ca 2+ channels (VDCCs) and require activation of the protein tyrosine kinase c-Src. We also demonstrate that clustering of NCAM2 induces L-type VDCC- and c-Src-dependent activation of CaMKII. NCAM2-dependent submembrane [Ca 2+] spikes colocalize with the bases of filopodia. NCAM2 activation increases the density of filopodia along neurites and neurite branching and outgrowth in an L-type VDCC-, c-Src-, and CaMKII-dependent manner. Our results therefore indicate that NCAM2 promotes the formation of filopodia and neurite branching by inducing Ca 2+ influx and CaMKII activation. Changes in NCAM2 expression in Down syndrome and autistic patients may therefore contribute to abnormal neurite branching observed in these disorders.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          jneurosci
          J. Neurosci
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          28 January 2015
          : 35
          : 4
          : 1739-1752
          Affiliations
          [1]School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, 2052 New South Wales, Australia
          Author notes
          Correspondence should be addressed to Vladimir Sytnyk at the above address. v.sytnyk@ 123456unsw.edu.au

          Author contributions: L.S., I.L., and V.S. designed research; L.S., I.L., and V.S. performed research; L.S., I.L., and V.S. analyzed data; L.S., I.L., and V.S. wrote the paper.

          Author information
          http://orcid.org/0000-0003-1927-2199
          Article
          PMC6795254 PMC6795254 6795254 1714-14
          10.1523/JNEUROSCI.1714-14.2015
          6795254
          25632147
          d29f4769-c417-46bc-80d9-131c5cda449b
          Copyright © 2015 the authors 0270-6474/15/351739-14$15.00/0
          History
          : 28 April 2014
          : 26 November 2014
          : 8 December 2014
          Categories
          Articles
          Cellular/Molecular

          neurons,calcium,cell adhesion molecule,neurite outgrowth,voltage-dependent Ca2+ channel

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