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Mol Cell Neurosci ; 6(6): 521-31, 1995 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-8742269

RESUMEN

The neural cell adhesion molecule (NCAM) promotes axonal growth via a homophilic binding mechanism by acting both as a neuronal receptor and a substratum ligand. We have previously shown that the GPI-linked 120-kDa isoform of NCAM, which lacks a cytoplasmic domain, is effective at promoting neurite outgrowth as a cellular ligand. To test its ability to function as a neuronal receptor, we have transfected PC12 cells with a cDNA encoding human GPI-linked NCAM and tested clones displaying stable cell surface expression of this isoform for their ability to respond to NCAM in a cellular substratum. Although they continued to express endogenous transmembrane rat isoforms of NCAM (140 and 180 kDa), PC12 cells expressing the GPI-linked NCAM lost their ability to extend neurites in response to substratum associated NCAM. However, their outgrowth response to N-cadherin and other activators of axonal growth was undiminished. Removal of GPI-linked NCAM from the surface of these clones using phosphatidylinositol-specific phospholipase C (PIPLC) fully restored their responsiveness to NCAM, indicating that the inhibition was a direct consequence of cell surface expression of this "dominant negative" isoform of NCAM. We have previously shown that expression of transfected 140- and 180-kDa isoforms of human NCAM in PC12 cells does not result in a loss of the neurite outgrowth response to NCAM. However, we show that deletion of the cytoplasmic domain of the 140-kDa isoform has the same effect as expression of GPI-linked NCAM. We conclude that the cytoplasmic domain of NCAM is required for an appropriate neurite outgrowth response.


Asunto(s)
Expresión Génica , Moléculas de Adhesión de Célula Nerviosa/fisiología , Neuritas/fisiología , Animales , Axones/efectos de los fármacos , Axones/fisiología , Cadherinas/farmacología , Células Clonales , Técnicas de Cocultivo , Citoplasma/fisiología , ADN Complementario , Ensayo de Inmunoadsorción Enzimática , Glicosilfosfatidilinositoles/metabolismo , Humanos , Peso Molecular , Moléculas de Adhesión de Célula Nerviosa/biosíntesis , Neuritas/ultraestructura , Células PC12 , Fosfatidilinositol Diacilglicerol-Liasa , Fosfoinositido Fosfolipasa C , Hidrolasas Diéster Fosfóricas/metabolismo , Hidrolasas Diéster Fosfóricas/farmacología , Ratas , Proteínas Recombinantes/biosíntesis , Transfección
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