Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of functional Kv4 channels is dynamically regulated by the membrane potential such that subthreshold depolarizations render Kv4 channels unavailable. The underlying process involves inactivation from closed states along the main activation pathway. Although classical inactivation mechanisms such as N- and P/C-type inactivation have been excluded, a clear understanding of closed-state inactivation in Kv4 channels has remained elusive. This is in part due to the lack of crucial information about the interactions between gating charge (Q) movement, activation, and inactivation. To overcome this limitation, we engineered a charybdotoxin (CTX)-sensiti...
Voltage-dependent potassium (Kv) channels provide the repolarizing power that shapes the action pote...
The voltage-gated K+ (Kv) channel subunit Kv6.4 does not form functional homotetrameric channels but...
Inactivation and recovery from inactivation of Kv4 voltage-gated potassium channels are thought to r...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
Inactivation is the auto-regulatory process of A-type voltage-gated K + (Kv) channels. Kv channels m...
Inactivation is the auto-regulatory process of A-type voltage-gated K + (Kv) channels. Kv channels m...
Poster presented at Society for Neuroscience Abstract: A-type voltage-gated K+ channels auto-regula...
Poster presented at Society for Neuroscience Abstract: A-type voltage-gated K+ channels auto-regula...
AbstractIn response to a prolonged membrane depolarization, inactivation autoregulates the activity ...
Poster presented at Society for Neuroscience Abstract: A-type voltage-gated K+ channels auto-regula...
AbstractMost voltage-gated potassium (Kv) channels undergo C-type inactivation during sustained depo...
The voltage-gated ion channel activity depends on both activation (transition from the resting state...
Voltage-gated K(+) (Kv) channel activation depends on interactions between voltage sensors and an in...
The voltage-gated ion channel activity depends on both activation (transition from the resting state...
Voltage-dependent potassium (Kv) channels provide the repolarizing power that shapes the action pote...
The voltage-gated K+ (Kv) channel subunit Kv6.4 does not form functional homotetrameric channels but...
Inactivation and recovery from inactivation of Kv4 voltage-gated potassium channels are thought to r...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
Inactivation is the auto-regulatory process of A-type voltage-gated K + (Kv) channels. Kv channels m...
Inactivation is the auto-regulatory process of A-type voltage-gated K + (Kv) channels. Kv channels m...
Poster presented at Society for Neuroscience Abstract: A-type voltage-gated K+ channels auto-regula...
Poster presented at Society for Neuroscience Abstract: A-type voltage-gated K+ channels auto-regula...
AbstractIn response to a prolonged membrane depolarization, inactivation autoregulates the activity ...
Poster presented at Society for Neuroscience Abstract: A-type voltage-gated K+ channels auto-regula...
AbstractMost voltage-gated potassium (Kv) channels undergo C-type inactivation during sustained depo...
The voltage-gated ion channel activity depends on both activation (transition from the resting state...
Voltage-gated K(+) (Kv) channel activation depends on interactions between voltage sensors and an in...
The voltage-gated ion channel activity depends on both activation (transition from the resting state...
Voltage-dependent potassium (Kv) channels provide the repolarizing power that shapes the action pote...
The voltage-gated K+ (Kv) channel subunit Kv6.4 does not form functional homotetrameric channels but...
Inactivation and recovery from inactivation of Kv4 voltage-gated potassium channels are thought to r...