Artículo
Extracellular Application of CRMP2 Increases Cytoplasmic Calcium through NMDA Receptors
Castillo Soto, Francisca Cecilia; Martinez Rozas, Juan Carlos; Longart, Marines; García, Lisbeth; Hernández, Marianela; Carballo, Jeismar; Rojas, Héctor Gustavo; Matteo, Lorena Romina; Casique, Liliana; Escalona Hernández, José Leonardo; Rodríguez, Yuryanni; Rodríguez Durán, Jessica Jenireth
; Hernández, Deyanell; Balbi, Domingo; Villegas, Raimundo
Fecha de publicación:
04/2018
Editorial:
Pergamon-Elsevier Science Ltd
Revista:
Neuroscience
ISSN:
0306-4522
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Collapsin Response Mediator Protein 2 (CRMP2) is an intracellular protein involved in axon and dendrite growth and specification. In this study, CRMP2 was identified in a conditioned media derived from degenerated sciatic nerves (CM). On cultured rat hippocampal neurons, acute extracellular application of CM or partially purified recombinant CRMP2 produced an increase in cytoplasmic calcium. The increase in cytoplasmic calcium was mostly mediated through NMDA receptors, with a minor contribution of N-type VDCC, and it was maintained as long as CM was present. By using live-labeling of CRMP2, Ca2+ channel binding domain 3 (CBD3) peptide derived from CRMP2, and recombinant CRMP2, we demonstrated that that this effect was mediated by an action on the extracellular side of the NMDA receptor. This is the first report of an extracellular action of CRMP2. Prolonged exposure to extracellular CRMP2, may contribute to neuronal calcium dysregulation and neuronal damage.
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Articulos(INGEBI)
Articulos de INST.DE INVEST.EN ING.GENETICA Y BIOL.MOLECULAR "DR. HECTOR N TORRES"
Articulos de INST.DE INVEST.EN ING.GENETICA Y BIOL.MOLECULAR "DR. HECTOR N TORRES"
Citación
Castillo Soto, Francisca Cecilia; Martinez Rozas, Juan Carlos; Longart, Marines; García, Lisbeth; Hernández, Marianela; et al.; Extracellular Application of CRMP2 Increases Cytoplasmic Calcium through NMDA Receptors; Pergamon-Elsevier Science Ltd; Neuroscience; 376; 4-2018; 204-223
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