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<i>N</i>‐Methyl‐D‐Aspartate Receptors and Ethanol: Inhibition of Calcium Flux and Cyclic GMP Production

Journal of Neurochemistry · 1989 · Vol. 52(6) · pp. 1937–1940
Paula L. HoffmanCarolyn S. RabeFrances E. MosesB Tabakoff

Abstract

Measurements of calcium uptake and cyclic GMP production by cerebellar granule cells grown in primary culture demonstrated that ethanol preferentially inhibited N-methyl-D-aspartate (NMDA) receptor-gated cation channel function. Concentrations of ethanol as low as 10 mM inhibited NMDA-stimulated Ca2+ uptake by greater than 30%, and ethanol also inhibited NMDA-stimulated (Ca2+-dependent) cyclic GMP accumulation in a similar, dose-dependent manner. Responses to kainate were significantly less sensitive to ethanol. Studies using various concentrations of NMDA, as well as phencyclidine (PCP) and glycine, suggested that ethanol affected the "coagonist" binding site of the NMDA receptor-channel complex, rather than the PCP recognition site.

Neuroscience and Neuropharmacology ResearchIon channel regulation and functionReceptor Mechanisms and SignalingNMDA receptorPhencyclidineKainate receptorEthanolChemistryCalciumBiophysicsBiochemistryReceptorGlycine

MeSH terms

EthanolAnimalsAspartic AcidCalciumCells, CulturedCerebellumDose-Response Relationship, DrugGlycineGranulocytesCyclic GMPOsmolar ConcentrationPhencyclidinePicrotoxinN-Methylaspartate
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