The voltage-gated ion channel activity depends on both activation (transition from the resting state to the open state) and inactivation. Inactivation is a self-restraint mechanism to limit ion conduction and is as crucial to membrane excitability as activation. Inactivation can occur when the channel is open or closed. Although open-state inactivation is well understood, the molecular basis of closed-state inactivation has remained elusive. We report cryo-EM structures of human KV4.2 channel complexes in inactivated, open, and closed states. Closed-state inactivation of KV4 involves an unprecedented symmetry breakdown for pore closure by only two of the four S4-S5 linkers, distinct from known mechanisms of open-state inactivation. We furth...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
A-type Kv4 potassium channels undergo a conformational change toward a nonconductive state at negati...
AbstractWe examined the relationship between deactivation and inactivation in Kv4.2 channels. In par...
The voltage-gated ion channel activity depends on both activation (transition from the resting state...
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...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Voltage-gated potassium (Kv) channels modulate the function of electrically-excitable and non-excita...
Abstract for Chapter 2:The structural basis for C-type inactivation in eukaryotic voltage-gated chan...
AbstractMost voltage-gated potassium (Kv) channels undergo C-type inactivation during sustained depo...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
AbstractA-type Kv4 potassium channels undergo a conformational change toward a nonconductive state a...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
A-type Kv4 potassium channels undergo a conformational change toward a nonconductive state at negati...
AbstractWe examined the relationship between deactivation and inactivation in Kv4.2 channels. In par...
The voltage-gated ion channel activity depends on both activation (transition from the resting state...
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...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Voltage-gated potassium (Kv) channels modulate the function of electrically-excitable and non-excita...
Abstract for Chapter 2:The structural basis for C-type inactivation in eukaryotic voltage-gated chan...
AbstractMost voltage-gated potassium (Kv) channels undergo C-type inactivation during sustained depo...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
AbstractA-type Kv4 potassium channels undergo a conformational change toward a nonconductive state a...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
Kv4 channels mediate the somatodendritic A-type K+ current (I(SA)) in neurons. The availability of f...
A-type Kv4 potassium channels undergo a conformational change toward a nonconductive state at negati...
AbstractWe examined the relationship between deactivation and inactivation in Kv4.2 channels. In par...