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PMID: 9849664 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

The GluR5 subtype of kainate receptor regulates excitatory synaptic transmission in areas CA1 and CA3 of the rat hippocampus.

Neuropharmacology ·Vol. 37 ·No. 10-11 ·1998-00-00 ·Pages 1269-77

Vignes M, Clarke VR, Parry MJ, Bleakman D, Lodge D, Ornstein PL, Collingridge GL

Abstract

Activation of kainate receptors depresses excitatory synaptic transmission in the hippocampus. In the present study, we have utilised a GluR5 selective agonist, ATPA [(RS)-2-amino-3-(3-hydroxy-5-tert-butylisoxazol-4-yl)propanoic acid], and a GluR5 selective antagonist, LY294486 [(3SR,4aRS,6SR,8aRS)-6-([[(1H-tetrazol-5-y l)methyl]oxy]methyl)-1,2,3,4,4a,5,6,7,8,8a-decahydroisoquinoline-3 -carboxylic acid], to determine whether GluR5 subunits are involved in this effect. ATPA mimicked the presynaptic depressant effects of kainate in the CA1 region of the hippocampus. It depressed reversibly AMPA (alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid) receptor-mediated field excitatory postsynaptic potentials (field EPSPs) with an IC50 value of approximately 0.60 microM. The dual-component excitatory postsynaptic current (EPSC) and the pharmacologically isolated NMDA (N-methyl-D-aspartate) receptor-mediated EPSC were depressed to a similar extent by 2 microM ATPA (61 +/- 7% and 58 +/- 6%, respectively). Depressions were associated with an increase in the paired-pulse facilitation ratio suggesting a presynaptic locus of action. LY294486 (20 microM) blocked the effects of 2 microM ATPA on NMDA receptor-mediated EPSCs in a reversible manner. In area CA3, 1 microM ATPA depressed reversibly mossy fibre-evoked synaptic transmission (by 82 +/- 10%). The effects of ATPA were not accompanied by any changes in the passive properties of CA1 or CA3 neurones. However, in experiments where K+, rather than Cs+, containing electrodes were used, a small outward current was observed. These results show that GluR5 subunits comprise or contribute to a kainate receptor that regulates excitatory synaptic transmission in both the CA1 and CA3 regions of the hippocampus.

MeSH Terms
Animals Excitatory Amino Acid Agonists/pharmacology Hippocampus/drug effects,physiology Isoxazoles/pharmacology Patch-Clamp Techniques Propionates/pharmacology Rats Rats, Wistar Receptors, Kainic Acid/drug effects,physiology Synaptic Transmission/drug effects,physiology
Chemicals
Excitatory Amino Acid Agonists Gluk1 kainate receptor Isoxazoles Propionates Receptors, Kainic Acid alpha-amino-3-hydroxy-5-tert-butyl-4-isoxazolepropionate
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Vignes M
Department of Anatomy, University of Bristol, UK.
Clarke V R
Parry M J
Bleakman D
Lodge D
Ornstein P L
Collingridge G L
Article Info
Journal
Neuropharmacology
Abbr.
Neuropharmacology
ISSN
0028-3908
Published
1998-00-00
Pages
1269-77
Language
English
Region
England
NLM ID
0236217
Subset
IM
Grants
Wellcome Trust · United Kingdom
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