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PMID: 10812200 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Substrate-induced up-regulation of Na(+)-dependent glutamate transport activity.

Neurochemistry international ·Vol. 37 ·No. 2-3 ·2000-00-00 ·Pages 147-62

Munir M, Correale DM, Robinson MB

Abstract

Sodium-dependent transporters regulate extracellular glutamate in the CNS. Recent studies suggest that the activity of several different neurotransmitter transporters can be rapidly regulated by a variety of mechanisms. In the present study, we report that pre-incubation of primary 'astrocyte-poor' neuronal cultures with glutamate (100 microM) for 30 min nearly doubled the V(max) for Na(+)-dependent accumulation of L-[(3)H]-glutamate, but had no effect on Na(+)-dependent [(3)H]-glycine transport. Pre-incubation with glutamate also increased the net uptake of non-radioactive glutamate, providing evidence that the increase in accumulation of L-[(3)H]-glutamate was not related to an increase in intracellular glutamate and a subsequent increase in exchange of intracellular non-radioactive glutamate for extracellular radioactive glutamate. The glutamate receptor agonists, alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate, quisqualate, and (1 S, 3R)-1-aminocyclopentane-1,3-dicarboxylic acid did not mimic the effect of pre-incubation with glutamate and the glutamate-induced increase was not blocked by receptor antagonists. However, compounds known to interact with the transporters, including L-aspartate, D-aspartate, L-(-)-threo-3-hydroxyaspartate (L-THA) and L-trans-pyrrolidine-2,4-dicarboxylate (L-trans-PDC), caused variable increases in transport activity and attenuated the increase induced by glutamate, suggesting that the increase is related to the interaction of glutamate with the transporters. Several studies were attempted to define the mechanism of this regulation. We found no evidence for increases in transporter synthesis or cell surface expression. Inhibitors of signaling molecules known to regulate other neurotransmitter transporters had no effect on this stimulation. Using a variety of cultures, evidence is provided to suggest that this substrate-induced up-regulation of glutamate transport is specific for the GLT-1 and GLAST subtypes and does not influence transport mediated by EAAC1. These studies suggest that the interaction of glutamate with some of the subtypes of glutamate transporters causes an increase in transport activity. Conceivably, this phenomenon provides an endogenous mechanism to increase the clearance of glutamate during periods of prolonged elevations in extracellular glutamate.

MeSH Terms
ATP-Binding Cassette Transporters/genetics,metabolism Amino Acid Transport System X-AG Animals Biological Transport, Active/physiology Biotin/metabolism Blotting, Western Cells, Cultured Cerebral Cortex/cytology Cricetinae Glutamic Acid/metabolism Kinetics Membrane Proteins/biosynthesis,metabolism Rats Receptors, Glutamate/metabolism Signal Transduction/physiology Sodium/physiology Synapses/physiology Synaptic Transmission/physiology Up-Regulation/physiology
Chemicals
ATP-Binding Cassette Transporters Amino Acid Transport System X-AG Membrane Proteins Receptors, Glutamate Glutamic Acid Biotin Sodium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Munir M
Departments of Pediatrics and Pharmacology, Children's Hospital of Philadelphia, University of Pennsylvania, 19104-4318, USA.
Correale D M
Robinson M B
Article Info
Journal
Neurochemistry international
Abbr.
Neurochem Int
ISSN
0197-0186
Published
2000-00-00
Pages
147-62
Language
English
Region
England
NLM ID
8006959
Subset
IM
Grants
NINDS NIH HHS · NS29868 · United States
NINDS NIH HHS · NS36465 · United States
NINDS NIH HHS · NS39011 · United States
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