International audienceVoltage-gated potassium (Kv) channels are involved in action potential (AP) repolarization in excitable cells. Exogenous application of membrane-derived lipids, such as arachidonic acid (AA), regulates the gating of Kv channels. Whether membrane-derived lipids released under physiological conditions have an impact on neuronal coding through this mechanism is unknown. We show that AA released in an activity-dependent manner from postsynaptic hippocampal CA3 pyramidal cells acts as retrograde messenger, inducing a robust facilitation of mossy fiber (Mf) synaptic transmission over several minutes. AA acts by broadening presynaptic APs through the direct modulation of Kv channels. This form of short-term plasticity can be ...
Voltage-gated ion channels regulate the electric activity of excitable tissues, such as the heart an...
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we ...
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we ...
International audienceVoltage-gated potassium (Kv) channels are involved in action potential (AP) re...
SummaryVoltage-gated potassium (Kv) channels are involved in action potential (AP) repolarization in...
SummaryVoltage-gated potassium (Kv) channels are involved in action potential (AP) repolarization in...
Synaptic communication is a dynamic process that is key to the regulation of neuronal excitability a...
<div><p>Synaptic communication is a dynamic process that is key to the regulation of neuronal excita...
Little is known about the properties and function of ion channels that affect synaptic terminal-rest...
Aim: Polyunsaturated fatty acids have been reported to reduce neuronal excitability, in part by prom...
Hippocampal mossy fiber long-term potentiation (LTP) is expressed presynaptically, but the exact mec...
Aim: Polyunsaturated fatty acids have been reported to reduce neuronal excitability, in part by prom...
An enhancement of glutamate release from hippocampal neurons has been implicated in long-term potent...
AbstractVoltage-gated ion channels regulate the electric activity of excitable tissues, such as the ...
Voltage-gated ion channels regulate the electric activity of excitable tissues, such as the heart an...
Voltage-gated ion channels regulate the electric activity of excitable tissues, such as the heart an...
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we ...
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we ...
International audienceVoltage-gated potassium (Kv) channels are involved in action potential (AP) re...
SummaryVoltage-gated potassium (Kv) channels are involved in action potential (AP) repolarization in...
SummaryVoltage-gated potassium (Kv) channels are involved in action potential (AP) repolarization in...
Synaptic communication is a dynamic process that is key to the regulation of neuronal excitability a...
<div><p>Synaptic communication is a dynamic process that is key to the regulation of neuronal excita...
Little is known about the properties and function of ion channels that affect synaptic terminal-rest...
Aim: Polyunsaturated fatty acids have been reported to reduce neuronal excitability, in part by prom...
Hippocampal mossy fiber long-term potentiation (LTP) is expressed presynaptically, but the exact mec...
Aim: Polyunsaturated fatty acids have been reported to reduce neuronal excitability, in part by prom...
An enhancement of glutamate release from hippocampal neurons has been implicated in long-term potent...
AbstractVoltage-gated ion channels regulate the electric activity of excitable tissues, such as the ...
Voltage-gated ion channels regulate the electric activity of excitable tissues, such as the heart an...
Voltage-gated ion channels regulate the electric activity of excitable tissues, such as the heart an...
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we ...
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we ...