Kainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A role for these receptors in the presynaptic control of transmitter release has been proposed but remains controversial. Here, KAR agonists are shown to enhance fiber excitability, and a number of experiments show that this is a direct effect of KARs on the presynaptic fibers. In addition, KAR activation inhibits evoked transmitter release from mossy fiber synapses. Synaptic release of glutamate from either neighboring mossy fiber synapses or associational/commisural (A/C) synapses results in the activation of these presynaptic ionotropic KARs. These results, along with previous studies, indicate that KARs, through the endogenous release of glutamate...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
AbstractKainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A...
AbstractKainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A...
Hippocampal mossy fibers, which are the axons of dentate granule cells, form powerful excitatory syn...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
AbstractThe mechanisms involved in mossy fiber LTP in the hippocampus are not well established. In t...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
SummaryPresynaptic autoreceptors modulate transmitter release at many synapses. At the mossy fiber t...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
AbstractKainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A...
AbstractKainate receptors (KARs) are a poorly understood family of ionotropic glutamate receptors. A...
Hippocampal mossy fibers, which are the axons of dentate granule cells, form powerful excitatory syn...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
AbstractThe mechanisms involved in mossy fiber LTP in the hippocampus are not well established. In t...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
SummaryPresynaptic autoreceptors modulate transmitter release at many synapses. At the mossy fiber t...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...
Kainate receptors, one of the three subtypes of ionotropic receptors for the excitatory transmitter ...
International audienceKainate receptors (KARs) constitute a family of ionotropic glutamate receptors...