Kainate receptors mediate glutamatergic signaling through both pre- and presynaptic receptors. Here, we studied the expression of the high affinity kainate receptor GluK5 in the mouse retina. Double-immunofluoresence labeling and electron microscopic analysis revealed a presynaptic localization of GluK5 in the outer plexiform layer. Unexpectedly, we found GluK5 almost exclusively localized to the presynaptic ribbon of photoreceptor terminals. Moreover, in GluK5-deficient mutant mice the structural integrity of synaptic ribbons was severely altered pointing to a novel function of GluK5 in organizing synaptic ribbons in the presynaptic terminals of rod photoreceptors
γ-Aminobutyric acid (GABA) and glycine are the major inhibitory neurotransmitters in the retina, gly...
mGlu1 and mGlu5 metabotropic glutamate receptors are expressed in the vertebrate retina, and are co-...
In chemical synapses, neurotransmitter molecules released from presynaptic vesicles activate populat...
<p>The electron micrographs show sections through rod ribbon synapses in the outer plexiform layer o...
Photoreceptor degeneration differentially impacts glutamatergic signaling in downstream On and Off b...
PURPOSE. The distribution of the most recently identified metabotropic glutamate receptor type 8a (m...
The expression of five genes (GluR A; B; C; D; GluR 5) encoding functional subunits of glutamate rec...
The distribution and synaptic clustering of glutamate receptors (GluRs) were studied in the inner pl...
We examined the distribution of the AMPA glutamate receptor subunits GluR1 to GluR4, of the kainate ...
Neural circuit wiring relies on selective synapse formation whereby a presynaptic release apparatus ...
The fulltext of this publication will be made publicly available after relevant embargo periods have...
AbstractThe main neurotransmitters in the vertebrate retina are glutamate, GABA and glycine. Their l...
<p>(A<sub>1</sub>–A<sub>8</sub>) Electron micrographs showing a series of ultrathin sections taken t...
AbstractMolecular cloning has introduced an unexpected diversity of neurotransmitter receptors. In t...
Visual signals are segregated into parallel pathways at the first synapse in the retina between cone...
γ-Aminobutyric acid (GABA) and glycine are the major inhibitory neurotransmitters in the retina, gly...
mGlu1 and mGlu5 metabotropic glutamate receptors are expressed in the vertebrate retina, and are co-...
In chemical synapses, neurotransmitter molecules released from presynaptic vesicles activate populat...
<p>The electron micrographs show sections through rod ribbon synapses in the outer plexiform layer o...
Photoreceptor degeneration differentially impacts glutamatergic signaling in downstream On and Off b...
PURPOSE. The distribution of the most recently identified metabotropic glutamate receptor type 8a (m...
The expression of five genes (GluR A; B; C; D; GluR 5) encoding functional subunits of glutamate rec...
The distribution and synaptic clustering of glutamate receptors (GluRs) were studied in the inner pl...
We examined the distribution of the AMPA glutamate receptor subunits GluR1 to GluR4, of the kainate ...
Neural circuit wiring relies on selective synapse formation whereby a presynaptic release apparatus ...
The fulltext of this publication will be made publicly available after relevant embargo periods have...
AbstractThe main neurotransmitters in the vertebrate retina are glutamate, GABA and glycine. Their l...
<p>(A<sub>1</sub>–A<sub>8</sub>) Electron micrographs showing a series of ultrathin sections taken t...
AbstractMolecular cloning has introduced an unexpected diversity of neurotransmitter receptors. In t...
Visual signals are segregated into parallel pathways at the first synapse in the retina between cone...
γ-Aminobutyric acid (GABA) and glycine are the major inhibitory neurotransmitters in the retina, gly...
mGlu1 and mGlu5 metabotropic glutamate receptors are expressed in the vertebrate retina, and are co-...
In chemical synapses, neurotransmitter molecules released from presynaptic vesicles activate populat...