Kainate Receptor-Mediated Responses in the CA1 Field of Wild-Type and GluR6-Deficient Mice
Open Access
- 15 January 1999
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 19 (2) , 653-663
- https://doi.org/10.1523/jneurosci.19-02-00653.1999
Abstract
Kainate receptors are abundantly expressed in the hippocampus. Mice with disruption of kainate receptor subunits allow the genetic dissection of the role of each kainate receptor subunits in the synaptic physiology of the hippocampus, as well as in excitotoxic processes. We have compared the action of domoate and kainate on CA1 pyramidal neurons in slices from wild-type and GluR6−/− mice. The difference in the amplitude of inward currents evoked by domoate and kainate between wild-type and GluR6−/− mice demonstrates the presence of functional kainate receptors in CA1 pyramidal neurons. Block of domoate-activated inward currents by the AMPA receptor antagonists 2,3-dihydroxy-6-nitro-7-sulfonyl-benzo(F)quinoxaline (1 μm) and 1-(4-aminophenyl)-3-methylcarbamyl-4-methyl7,8-methylenedioxy-3,4-dihydro-5H-2,3-benzodiazepine) (GYKI 53655) (50 μm) is complete in GluR6−/− mice but only partial in wild-type mice. In the presence of GYKI 53655, kainate receptor activation dramatically increases the frequency of spontaneous IPSCs in CA1 pyramidal cells from wild-type, as well as GluR6−/−, mice. This results from the kainate receptor-mediated activation of a sustained inward current and an increased action potential firing in afferent GABAergic interneurons of the CA1 field. These effects are observed in wild-type, as well as GluR6−/−, mice. Kainate receptors also decrease the amplitude of evoked IPSCs in CA1 pyramidal cells by increasing synaptic failures in wild-type and GluR6−/− mice. These results indicate that in CA1 pyramidal cells, distinct subtypes of kainate receptors mediate several functionally antagonistic effects.Keywords
This publication has 33 references indexed in Scilit:
- Kainate receptor‐mediated inhibition of presynaptic Ca2+ influx and EPSP in area CA1 of the rat hippocampusThe Journal of Physiology, 1998
- Comparative Antagonism of Kainate‐activated Kainate and AMPA Receptors in Hippocampal NeuronsEuropean Journal of Neuroscience, 1996
- Regulation of glutamate release by presynaptic kainate receptors in the hippocampusNature, 1996
- Selective antagonism of AMPA receptors unmasks kainate receptor-mediated responses in hippocampal neuronsNeuron, 1995
- Cloned Glutamate ReceptorsAnnual Review of Neuroscience, 1994
- Molecular Diversity of Glutamate Receptors and Implications for Brain FunctionScience, 1992
- The KA-2 subunit of excitatory amino acid receptors shows widespread expression in brain and forms ion channels with distantly related subunitsNeuron, 1992
- Cloning of a cDNA for a glutamate receptor subunit activated by kainate but not AMPANature, 1991
- Glutamate receptor channels in rat DRG neurons: Activation by kainate and quisqualate and blockade of desensitization by con ANeuron, 1990
- On the relationship between kainic acid-induced epileptiform activity and hippocampal neuronal damageNeuropharmacology, 1981