AbstractThe mechanisms involved in mossy fiber LTP in the hippocampus are not well established. In the present study, we show that the kainate receptor antagonist LY382884 (10 μM) is selective for presynaptic kainate receptors in the CA3 region of the hippocampus. At a concentration at which it blocks mossy fiber LTP, LY382884 selectively blocks the synaptic activation of a presynaptic kainate receptor that facilitates AMPA receptor-mediated synaptic transmission. Following the induction of mossy fiber LTP, there is a complete loss of the presynaptic kainate receptor-mediated facilitation of synaptic transmission. These results identify a central role for the presynaptic kainate receptor in the induction of mossy fiber LTP. In addition, the...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
AbstractKainate receptors alter the excitability of mossy fiber axons and have been reported to play...
Compared with NMDA receptor-dependent LTP, much less is known about the mechanism of induction of NM...
AbstractThe mechanisms involved in mossy fiber LTP in the hippocampus are not well established. In t...
AbstractKainate receptors alter the excitability of mossy fiber axons and have been reported to play...
Hippocampal mossy fiber synapses show an unusual form of long-term potentiation (LTP) that is indepe...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
Hippocampal mossy fibers, which are the axons of dentate granule cells, form powerful excitatory syn...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
AbstractKainate receptors alter the excitability of mossy fiber axons and have been reported to play...
Compared with NMDA receptor-dependent LTP, much less is known about the mechanism of induction of NM...
AbstractThe mechanisms involved in mossy fiber LTP in the hippocampus are not well established. In t...
AbstractKainate receptors alter the excitability of mossy fiber axons and have been reported to play...
Hippocampal mossy fiber synapses show an unusual form of long-term potentiation (LTP) that is indepe...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
Hippocampal mossy fibers, which are the axons of dentate granule cells, form powerful excitatory syn...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
It is currently unknown why glutamatergic presynaptic terminals express multiple types of glutamate ...
AbstractKainate receptors alter the excitability of mossy fiber axons and have been reported to play...
Compared with NMDA receptor-dependent LTP, much less is known about the mechanism of induction of NM...