CHARACTERIZATION OF THE EXCITOPROTECTIVE ACTIONS OF N-METHYL-D-ASPARTATE IN CULTURED CEREBELLAR GRANULE NEURONS

Citation
P. Damschroderwilliams et al., CHARACTERIZATION OF THE EXCITOPROTECTIVE ACTIONS OF N-METHYL-D-ASPARTATE IN CULTURED CEREBELLAR GRANULE NEURONS, Journal of neurochemistry, 65(3), 1995, pp. 1069-1076
Citations number
27
Categorie Soggetti
Biology,Neurosciences
Journal title
ISSN journal
00223042
Volume
65
Issue
3
Year of publication
1995
Pages
1069 - 1076
Database
ISI
SICI code
0022-3042(1995)65:3<1069:COTEAO>2.0.ZU;2-Y
Abstract
Exposure of cultured cerebellar granule neurons to subtoxic concentrat ions of N-methyl-D-aspartate (NMDA) has been shown previously to resul t in a neuroprotective state, as measured by subsequent exposure to to xic concentrations of glutamate. In the present study, we have further characterized the excitoprotective actions of NMDA in these neurons. NMDA-induced excitoprotection was concentration dependent (EC(50) simi lar to 30 mu M) and time dependent, with maximal protection observed f ollowing 16 h of preexposure to NMDA. NMDA-induced excitoprotection di d not require continuous exposure to NMDA, as a 4-h preincubation was sufficient to induce full excitoprotection when measured 8 h later. Ma ximal protection was manifest as a ''right shift'' in the concentratio n-response relationship for glutamate toxicity of approximately three orders of magnitude (EC(50) similar to 30 mu M in untreated neurons co mpared with greater than or equal to 50 mM in NMDA-treated neurons). A fter removal of NMDA, complete reversal of the excitoprotective state was observed by 48 h (t(1/2) approximate to 24 h). The ability of NMDA to induce excitoprotection was observed in neurons maintained for up to 14 days in vitro (DIV) [postnatal day (PND) 22], but was absent at 21 and 32 DIV (PND 29-40), despite little to no difference in the toxi city of glutamate at any DIV examined. Preexposure of cerebellar granu le neurons to a maximally excitoprotective concentration of NMDA (50 m u M) failed to alter the density of NMDA receptors measured by the spe cific binding of [H-3]MK-801. Moreover, the immediate elevation in int racellular free calcium concentration ([Ca2+](i)) induced by glutamate exposure and measured by microfluorimetry and the Ca2+-sensitive indi cator fura-2 was similar in NMDA-pretreated and untreated neurons. As reported previously, NMDA-induced excitoprotection in cerebellar granu le neurons was, however, reversed by coincubation with the protein syn thesis inhibitor cycloheximide. Taken together, these data suggest tha t NMDA receptor-mediated excitoprotection in cerebellar granule neuron s is mediated via both a transcriptionally directed and a developmenta lly regulated postreceptor mechanism(s).