KEY POINTS: Voltage-gated KV 10.1 potassium channels are widely expressed in the mammalian brain but their function remains poorly understood. We report that KV 10.1 is enriched in the presynaptic terminals and does not take part in somatic action potentials. In parallel fibre synapses in the cerebellar cortex, we find that KV 10.1 regulates Ca(2+) influx and neurotransmitter release during repetitive high-frequency activity. Our results describe the physiological role of mammalian KV 10.1 for the first time and help understand the fine-tuning of synaptic transmission. The voltage-gated potassium channel KV 10.1 (Eag1) is widely expressed in the mammalian brain, but its physiological function is not yet understood. Previous studies revealed...
In myelinated axons, K(+) channels are clustered in distinct membrane domains to regulate action pot...
International audienceCa(V)3.1 T-type channels are abundant at the cerebellar synapse between parall...
Ca(V)3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje...
The voltage-gated potassium channel K(V)10.1 (Eag1) is widely expressed in the mammalian brain, but ...
The voltage-gated potassium channel K(V)10.1 (Eag1) is widely expressed in the mammalian brain, but ...
Purkinje cells (PCs) generate the sole output of the cerebellar cortex and govern the timing of acti...
The discrete arrangement of voltage-gated K(+) (Kv) channels in axons may impart functional advantag...
In many neurons, subthreshold depolarization in the soma can transiently increase action-potential (...
Little is known about the properties and function of ion channels that affect synaptic terminal-rest...
Der spannungsabhängige Kaliumkanal Kv10.1 ist in vielen Teilen des Gehirns exprimiert, allerdings wu...
Functional connectivity between brain regions relies on long-range signaling by myelinated axons. Th...
SummaryFunctional connectivity between brain regions relies on long-range signaling by myelinated ax...
2014 Fall.Includes bibliographical references.The voltage-gated K+ channel, Kv2.1, is expressed wide...
The medial nucleus of the trapezoid body (MNTB) rapidly and precisely relays auditory information us...
The medial nucleus of the trapezoid body (MNTB) rapidly and precisely relays auditory information us...
In myelinated axons, K(+) channels are clustered in distinct membrane domains to regulate action pot...
International audienceCa(V)3.1 T-type channels are abundant at the cerebellar synapse between parall...
Ca(V)3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje...
The voltage-gated potassium channel K(V)10.1 (Eag1) is widely expressed in the mammalian brain, but ...
The voltage-gated potassium channel K(V)10.1 (Eag1) is widely expressed in the mammalian brain, but ...
Purkinje cells (PCs) generate the sole output of the cerebellar cortex and govern the timing of acti...
The discrete arrangement of voltage-gated K(+) (Kv) channels in axons may impart functional advantag...
In many neurons, subthreshold depolarization in the soma can transiently increase action-potential (...
Little is known about the properties and function of ion channels that affect synaptic terminal-rest...
Der spannungsabhängige Kaliumkanal Kv10.1 ist in vielen Teilen des Gehirns exprimiert, allerdings wu...
Functional connectivity between brain regions relies on long-range signaling by myelinated axons. Th...
SummaryFunctional connectivity between brain regions relies on long-range signaling by myelinated ax...
2014 Fall.Includes bibliographical references.The voltage-gated K+ channel, Kv2.1, is expressed wide...
The medial nucleus of the trapezoid body (MNTB) rapidly and precisely relays auditory information us...
The medial nucleus of the trapezoid body (MNTB) rapidly and precisely relays auditory information us...
In myelinated axons, K(+) channels are clustered in distinct membrane domains to regulate action pot...
International audienceCa(V)3.1 T-type channels are abundant at the cerebellar synapse between parall...
Ca(V)3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje...