Kainate receptor activation depresses synaptic release of neurotransmitter at a number of synapses in the CNS. The mechanism underlying this depression is controversial, and both ionotropic and metabotropic mechanisms have been suggested. We report here that the AMPA/kainate receptor agonists domoate (DA) and kainate (KA) cause a presynaptic depression of glutamatergic transmission at CA3-->CA1 synapses in the hippocampus, which is not blocked by the AMPA receptor antagonist GYKI 53655 but is blocked by the AMPA/KA receptor antagonist CNQX. Neither a blockade of interneuronal discharge nor antagonists of several neuromodulators affect the depression, suggesting that it is not the result of indirect excitation and subsequent release of a neu...
International audienceActivation of kainate receptors depresses excitatory synaptic transmission in ...
The hippocampal CA3 subregion of the rat is characteristically enriched in kainate receptors. At the...
This article is part of a Special Issue entitled: Synaptic plasticity.Extensive research over the pa...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
AbstractThe mechanism through which kainate receptors downregulate the release of GABA in the hippoc...
It is well established that long-term depression (LTD) can be initiated by either NMDA or mGluR acti...
Presynaptic kainate (KA) receptors (KARs) modulate GABA and glutamate release in the central nervous...
AbstractBrain functions are based on the dynamic interaction of excitatory and inhibitory inputs. Sp...
Kainate (KA) receptor activation depresses stimulus-evoked gamma-aminobutyric acid (GABA-mediated) s...
Kainate receptors are ionotropic glutamate receptors located postsynaptically, mediating frequency-d...
AbstractKainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A...
AbstractKainate receptors (KARs) on CA1 pyramidal cells make no detectable contribution to EPSCs. We...
AbstractWe have explored the mechanisms involved in the facilitation of glutamate release mediated b...
AbstractWe report that kainate receptors are present on presynaptic GABAergic terminals contacting i...
SummaryKainate receptors (KARs) have been shown to be involved in hippocampal mossy fiber long-term ...
International audienceActivation of kainate receptors depresses excitatory synaptic transmission in ...
The hippocampal CA3 subregion of the rat is characteristically enriched in kainate receptors. At the...
This article is part of a Special Issue entitled: Synaptic plasticity.Extensive research over the pa...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
AbstractThe mechanism through which kainate receptors downregulate the release of GABA in the hippoc...
It is well established that long-term depression (LTD) can be initiated by either NMDA or mGluR acti...
Presynaptic kainate (KA) receptors (KARs) modulate GABA and glutamate release in the central nervous...
AbstractBrain functions are based on the dynamic interaction of excitatory and inhibitory inputs. Sp...
Kainate (KA) receptor activation depresses stimulus-evoked gamma-aminobutyric acid (GABA-mediated) s...
Kainate receptors are ionotropic glutamate receptors located postsynaptically, mediating frequency-d...
AbstractKainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A...
AbstractKainate receptors (KARs) on CA1 pyramidal cells make no detectable contribution to EPSCs. We...
AbstractWe have explored the mechanisms involved in the facilitation of glutamate release mediated b...
AbstractWe report that kainate receptors are present on presynaptic GABAergic terminals contacting i...
SummaryKainate receptors (KARs) have been shown to be involved in hippocampal mossy fiber long-term ...
International audienceActivation of kainate receptors depresses excitatory synaptic transmission in ...
The hippocampal CA3 subregion of the rat is characteristically enriched in kainate receptors. At the...
This article is part of a Special Issue entitled: Synaptic plasticity.Extensive research over the pa...