AbstractVoltage-gated ion channels undergo slow inactivation during prolonged depolarizations. We investigated the role of a conserved glutamate at the extracellular end of segment 5 (S5) in slow inactivation by mutating it to a cysteine (E418C in Shaker). We could lock the channel in two different conformations by disulfide-linking 418C to two different cysteines, introduced in the Pore–S6 (P–S6) loop. Our results suggest that E418 is normally stabilizing the open conformation of the slow inactivation gate by forming hydrogen bonds with the P–S6 loop. Breaking these bonds allows the P–S6 loop to rotate, which closes the slow inactivation gate. Our results also suggest a mechanism of how the movement of the voltage sensor can induce slow in...
AbstractWith prolonged or repetitive activation, voltage-gated K+ channels undergo a slow (C-type) i...
Slow inactivation is an intrinsic biophysical property of voltage-gated potassium (Kv) channels that...
In contrast to fast inactivation, the molecular basis of sodium (Na) channel slow inactivation is po...
AbstractVoltage-gated ion channels undergo slow inactivation during prolonged depolarizations. We in...
Voltage-dependent K 1 channel gating is influenced by the permeating ions. Extracellular K 1 determi...
Slow inactivation occurs in voltage-gated Na+ channels when the membrane is depolarized for several ...
AbstractInactivation is an inherent property of most voltage-gated K+ channels. While fast N-type in...
In Kv channels, slow, P/C-type, inactivation is thought to eliminate ionic current via a concerted s...
Slow inactivation occurs in voltage-gated Na+ channels when the membrane is depolarized for several ...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
AbstractVoltage gated potassium channels open and inactivate in response to changes of the voltage a...
Slow inactivation is an intrinsic biophysical property of voltage-gated potassium (Kv) channels that...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
AbstractWith prolonged or repetitive activation, voltage-gated K+ channels undergo a slow (C-type) i...
Slow inactivation is an intrinsic biophysical property of voltage-gated potassium (Kv) channels that...
In contrast to fast inactivation, the molecular basis of sodium (Na) channel slow inactivation is po...
AbstractVoltage-gated ion channels undergo slow inactivation during prolonged depolarizations. We in...
Voltage-dependent K 1 channel gating is influenced by the permeating ions. Extracellular K 1 determi...
Slow inactivation occurs in voltage-gated Na+ channels when the membrane is depolarized for several ...
AbstractInactivation is an inherent property of most voltage-gated K+ channels. While fast N-type in...
In Kv channels, slow, P/C-type, inactivation is thought to eliminate ionic current via a concerted s...
Slow inactivation occurs in voltage-gated Na+ channels when the membrane is depolarized for several ...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
AbstractVoltage gated potassium channels open and inactivate in response to changes of the voltage a...
Slow inactivation is an intrinsic biophysical property of voltage-gated potassium (Kv) channels that...
Prolonged depolarization induces a slow inactivation process in some K+ channels. We have studied io...
Prolonged depolarization induces a slow inactivation process in some Ki channels. We have studied io...
AbstractWith prolonged or repetitive activation, voltage-gated K+ channels undergo a slow (C-type) i...
Slow inactivation is an intrinsic biophysical property of voltage-gated potassium (Kv) channels that...
In contrast to fast inactivation, the molecular basis of sodium (Na) channel slow inactivation is po...