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PMID: 11299329 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

ATP stimulates calcium-dependent glutamate release from cultured astrocytes.

Journal of neurochemistry ·Vol. 77 ·No. 2 ·2001-04-00 ·Pages 664-75

Jeremic A, Jeftinija K, Stevanovic J, Glavaski A, Jeftinija S

Abstract

ATP caused a dose-dependent, receptor-mediated increase in the release of glutamate and aspartate from cultured astrocytes. Using calcium imaging in combination HPLC we found that the increase in intracellular calcium coincided with an increase in glutamate and aspartate release. Competitive antagonists of P(2) receptors blocked the response to ATP. The increase in intracellular calcium and release of glutamate evoked by ATP were not abolished in low Ca(2+)-EGTA saline, suggesting the involvement of intracellular calcium stores. Pre-treatment of glial cultures with an intracellular Ca(2+) chelator abolished the stimulatory effects of ATP. Thapsigargin (1 microM), an inhibitor of Ca(2+)-ATPase from the Ca(2+) pump of internal stores, significantly reduced the calcium transients and the release of aspartate and glutamate evoked by ATP. U73122 (10 microM, a phospholipase C inhibitor, attenuated the ATP-stimulatory effect on calcium transients and blocked ATP-evoked glutamate release in astrocytes. Replacement of extracellular sodium with choline failed to influence ATP-induced glutamate release. Furthermore, inhibition of the glutamate transporters p-chloromercuri-phenylsulfonic acid and Ltrans-pyrolidine-2,4-dicarboxylate failed to impair the ability of ATP to stimulate glutamate release from astrocytes. However, an anion transport inhibitor, furosemide, and a potent Cl(-) channel blocker, 5-nitro-2(3-phenylpropylamino)-benzoate, reduced ATP-induced glutamate release. These results suggest that ATP stimulates excitatory amino acid release from astrocytes via a calcium-dependent anion-transport sensitive mechanism.

MeSH Terms
4-Chloromercuribenzenesulfonate/pharmacology ATP-Binding Cassette Transporters/antagonists & inhibitors Adenosine Triphosphate/pharmacology Amino Acid Transport System X-AG Animals Aspartic Acid/metabolism Astrocytes/drug effects,metabolism Caffeine/pharmacology Calcium Signaling/drug effects,physiology Calcium-Transporting ATPases/antagonists & inhibitors Cells, Cultured/drug effects,metabolism Cerebral Cortex/cytology Chelating Agents/pharmacology Chloride Channels/drug effects Chromatography, High Pressure Liquid Egtazic Acid/pharmacology Enzyme Inhibitors/pharmacology Estrenes/pharmacology Furosemide/pharmacology Glutamic Acid/metabolism Ion Transport/drug effects Nitrobenzoates/pharmacology Phosphatidylinositol Diacylglycerol-Lyase Pyrrolidinones/pharmacology Rats Ryanodine/pharmacology Sodium/pharmacology Thapsigargin/pharmacology Type C Phospholipases/antagonists & inhibitors
Chemicals
ATP-Binding Cassette Transporters Amino Acid Transport System X-AG Chelating Agents Chloride Channels Enzyme Inhibitors Estrenes Nitrobenzoates Pyrrolidinones 1-(6-((3-methoxyestra-1,3,5(10)-trien-17-yl)amino)hexyl)-1H-pyrrole-2,5-dione Ryanodine Aspartic Acid 5-nitro-2-(3-phenylpropylamino)benzoic acid Caffeine Glutamic Acid Egtazic Acid 4-Chloromercuribenzenesulfonate Thapsigargin Furosemide Adenosine Triphosphate Sodium Type C Phospholipases Phosphatidylinositol Diacylglycerol-Lyase Calcium-Transporting ATPases
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Jeremic A
Department of Biomedical Sciences, Neuroscience Program, Iowa State University, Ames, USA.
Jeftinija K
Stevanovic J
Glavaski A
Jeftinija S
Article Info
Journal
Journal of neurochemistry
Abbr.
J Neurochem
ISSN
0022-3042
Published
2001-04-00
Pages
664-75
Language
English
Region
England
NLM ID
2985190R
Subset
IM
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