A Mosaic of Functional Kainate Receptors in Hippocampal Interneurons
Open Access
- 13 October 2004
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 24 (41) , 8986-8993
- https://doi.org/10.1523/jneurosci.2156-04.2004
Abstract
Although some physiological functions of kainate receptors (KARs) still remain unclear, recent advances have highlighted a role in synaptic physiology. In hippocampal slices, kainate depresses GABA-mediated synaptic inhibition and increases the firing rate of interneurons. However, the sensitivity to agonists of these responses differs, suggesting that the presynaptic and somatic KARs have a distinct molecular composition. Hippocampal interneurons express several distinct KAR subunits that can assemble into heteromeric receptors with a variety of pharmacological properties and that, in principle, could fulfill different roles. To address which receptor types mediate each of the effects of kainate in interneurons, we used new compounds and mice deficient for specific KAR subunits. In a recombinant assay, 5-carboxyl-2,4-di-benzamido-benzoic acid (NS3763) acted exclusively on homomeric glutamate receptor subunit 5 (GluR5), whereas 3S,4aR,6S,8aR-6-((4-carboxyphenyl)methyl) 1,2,3,4,4a,5,6,7,8,8a-decahydroisoquinoline-3-carboxylic acid (LY382884) antagonized homomeric GluR5 and any heteromeric combination containing GluR5 subunits. In hippocampal slices, LY382884, but not NS3763, was able to prevent kainate-induced depression of evoked IPSC. In contrast, neither prevented the concomitant increase in spontaneous IPSC frequency. The selectivity of these compounds was seen additionally in knock-out mice, such that they were inactive in GluR5-/-mice but completely effective in GluR6-/-mice. Our data indicate that in wild-type mice, CA1 interneurons express heteromeric GluR6 -KA2 receptors in their somatic compartments and GluR5-GluR6 or GluR5-KA2 at presynaptic terminals. However, functional compensation appears to take place in the null mutants, a new pharmacological profile emerging more compatible with the activity of homomeric receptors in both compartments: GluR5 in GluR6-/-mice and GluR6 in GluR5-/-mice.Keywords
This publication has 29 references indexed in Scilit:
- In Vitro Characterization of 5-Carboxyl-2,4-di-benzamidobenzoic Acid (NS3763), a Noncompetitive Antagonist of GLUK5 ReceptorsThe Journal of Pharmacology and Experimental Therapeutics, 2004
- Pharmacological characterization of glutamatergic agonists and antagonists at recombinant human homomeric and heteromeric kainate receptors in vitroNeuropharmacology, 2004
- A Role for Extracellular Na+in the Channel Gating of Native and Recombinant Kainate ReceptorsJournal of Neuroscience, 2003
- Roles and rules of kainate receptors in synaptic transmissionNature Reviews Neuroscience, 2003
- Limbic seizure and brain damage produced by kainic acid: Mechanisms and relevance to human temporal lobe epilepsyPublished by Elsevier ,2003
- Paradoxical Anti-Epileptic Effects of a GluR5 Agonist of Kainate ReceptorsJournal of Neurophysiology, 2002
- Antagonists of GLUK5-containing kainate receptors prevent pilocarpine-induced limbic seizuresNature Neuroscience, 2002
- Effect of RNA editing and subunit co‐assembly single‐channel properties of recombinant kainate receptors.The Journal of Physiology, 1996
- Selective antagonism of AMPA receptors unmasks kainate receptor-mediated responses in hippocampal neuronsNeuron, 1995
- The KA-2 subunit of excitatory amino acid receptors shows widespread expression in brain and forms ion channels with distantly related subunitsNeuron, 1992