EAG (ether-a-go-go or KCNH) are a subfamily of the voltage-gated potassium (Kv) channels. Like for all potassium channels, opening of EAG channels drives the membrane potential toward its equilibrium value for potassium, thus setting the resting potential and repolarizing action potentials. As voltage-dependent channels, they switch between open and closed conformations (gating) when changes in membrane potential are sensed by a voltage sensing domain (VSD) which is functionally coupled to a pore domain (PD) containing the permeation pathway, the potassium selectivity filter, and the channel gate. All Kv channels are tetrameric, with four VSDs formed by the S1-S4 transmembrane segments of each subunit, surrounding a central PD with the four...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Kv7 potassium channels whose mutations cause cardiovascular and neurological disorders are members o...
AbstractVoltage-gated K+ channel activation is proposed to result from simultaneous bending of all S...
Voltage-dependent potassium channels (Kv channels) are crucial regulators of cell excitability that ...
Voltage-dependent potassium channels (Kv channels) are crucial regulators of cell excitability that ...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractVoltage-gated potassium (Kv) channels, such as Kv1.2, are involved in the generation and pro...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractVoltage-gated K+ channels share a common voltage sensor domain (VSD) consisting of four tran...
Voltage-gated potassium (Kv) channels orchestrate electrical signaling and control cell volume by ga...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
AbstractVoltage-gated K+ channels share a common voltage sensor domain (VSD) consisting of four tran...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
AbstractVoltage-gated potassium (Kv) channels, such as Kv1.2, are involved in the generation and pro...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Kv7 potassium channels whose mutations cause cardiovascular and neurological disorders are members o...
AbstractVoltage-gated K+ channel activation is proposed to result from simultaneous bending of all S...
Voltage-dependent potassium channels (Kv channels) are crucial regulators of cell excitability that ...
Voltage-dependent potassium channels (Kv channels) are crucial regulators of cell excitability that ...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractVoltage-gated potassium (Kv) channels, such as Kv1.2, are involved in the generation and pro...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractVoltage-gated K+ channels share a common voltage sensor domain (VSD) consisting of four tran...
Voltage-gated potassium (Kv) channels orchestrate electrical signaling and control cell volume by ga...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
AbstractVoltage-gated K+ channels share a common voltage sensor domain (VSD) consisting of four tran...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
AbstractVoltage-gated potassium (Kv) channels, such as Kv1.2, are involved in the generation and pro...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Voltage-gated ion channels couple transmembrane potential changes to ion flow. Conformational change...
Kv7 potassium channels whose mutations cause cardiovascular and neurological disorders are members o...
AbstractVoltage-gated K+ channel activation is proposed to result from simultaneous bending of all S...