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PMID: 7901348 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Basic FGF regulates the expression of a functional 71 kDa NMDA receptor protein that mediates calcium influx and neurotoxicity in hippocampal neurons.

Mattson MP, Kumar KN, Wang H, Cheng B, Michaelis EK

Abstract

Basic fibroblast growth factor (bFGF) was recently found to modulate the outgrowth-regulating effects of glutamate, and protected neurons from several brain regions against excitotoxi/ischemic damage. We provide evidence that the excitoprotective mechanism of bFGF involves suppression of the expression of a 71 kDa NMDA receptor protein (NMDARP-71). NMDARP-71 protein and mRNA levels were reduced in neurons in bFGF-treated hippocampal cell cultures. The levels of the NMDARP-71 were not reduced by NGF or epidermal growth factor, and bFGF did not reduce the level of mRNA for the GluR1 kainate/AMPA receptor, demonstrating the specificity of the effect of bFGF on the NMDARP-71. The reduction in NMDARP-71 expression in bFGF-treated neurons was correlated with reduced vulnerability to NMDA neurotoxicity. A major role for NMDARP-71 in calcium responses to NMDA and excitotoxicity was demonstrated using antisense oligonucleotides directed against NMDARP-71. Northern and Western blot analysis and immunocytochemistry showed that NMDARP-71 antisense oligonucleotides caused a selective suppression of NMDARP-71 mRNA and protein levels during 12-44 hr exposure periods. Elevations in intracellular calcium levels normally caused by glutamate and NMDA were attenuated in neurons exposed to NMDARP-71 antisense oligonucleotide; calcium responses to kainate were relatively unaffected. NMDARP-71 antisense oligonucleotides protected the neurons against excitotoxicity. Thus, NMDARP-71 is a necessary component of an NMDA receptor mediating calcium responses and neurotoxicity in hippocampal neurons. Taken together, these data identify a mechanism whereby bFGF can modify neuronal responses to glutamate, and suggest that regulating the expression of excitatory amino acid receptors may provide a means for growth factors to influence the plasticity and degeneration of neural circuits.

MeSH Terms
Animals Base Sequence Blotting, Western Calcium/metabolism Cell Survival/drug effects Cells, Cultured Embryo, Mammalian Fibroblast Growth Factor 2/pharmacology Gene Expression/drug effects Glutamates/toxicity Glutamic Acid Hippocampus/drug effects,metabolism,pathology Kainic Acid/toxicity Kinetics Molecular Sequence Data N-Methylaspartate/toxicity Neurons/drug effects,metabolism,pathology Neurotoxins/toxicity Oligodeoxyribonucleotides RNA, Messenger/metabolism Rats Receptors, N-Methyl-D-Aspartate/biosynthesis,drug effects,isolation & purification
Chemicals
Glutamates Neurotoxins Oligodeoxyribonucleotides RNA, Messenger Receptors, N-Methyl-D-Aspartate Fibroblast Growth Factor 2 Glutamic Acid N-Methylaspartate Kainic Acid Calcium
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Mattson M P
Sanders-Brown Research Center on Aging, University of Kentucky, Lexington 40536-0230.
Kumar K N
Wang H
Cheng B
Michaelis E K
Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
0270-6474
Published
1993-11-00
Pages
4575-88
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6576350
Subset
IM
Grants
NIA NIH HHS · AG05144-07 · United States
NIAAA NIH HHS · NIAAA AA-4732 · United States
NINDS NIH HHS · NS29001-01 · United States
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