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Functional Analysis of a De Novo GRIN2A Missense Mutation Associated with Early-onset Epileptic Encephalopathy

NMDA receptors (NMDAR), ligand-gated ion channels, play important roles in various neurological disorders, including epilepsy. Here we show the functional analysis of a de novo missense mutation (L812M) in a gene encoding NMDAR subunit GluN2A (GRIN2A). The mutation, identified in a patient with earl...

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Detalles Bibliográficos
Autores principales: Yuan, Hongjie, Hansen, Kasper B., Zhang, Jing, Pierson, Tyler Mark, Markello, Thomas C., Fuentes Fajardo, Karin V., Holloman, Conisha M., Golas, Gretchen, Adams, David R., Boerkoel, Cornelius F., Gahl, William A., Traynelis, Stephen F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3934797/
https://www.ncbi.nlm.nih.gov/pubmed/24504326
http://dx.doi.org/10.1038/ncomms4251
Descripción
Sumario:NMDA receptors (NMDAR), ligand-gated ion channels, play important roles in various neurological disorders, including epilepsy. Here we show the functional analysis of a de novo missense mutation (L812M) in a gene encoding NMDAR subunit GluN2A (GRIN2A). The mutation, identified in a patient with early-onset epileptic encephalopathy and profound developmental delay, is located in the linker region between the ligand-binding and transmembrane domains. Electrophysiological recordings revealed that the mutation enhances agonist potency, decreases sensitivity to negative modulators including magnesium, protons and zinc, prolongs the synaptic response time course, and increases single channel open probability. The functional changes of this amino acid apply to all other NMDAR subunits, suggesting an important role of this residue on the function of NMDARs. Taken together, these data suggest that the L812M mutation causes over-activation of NMDARs and drives neuronal hyperexcitability. We hypothesize that this mechanism underlies the patient’s epileptic phenotype as well as cerebral atrophy.