ABSTRACT The cytoplasmic ends of the four S6 transmembrane segments of voltage-gated potassium channels converge in a bundle crossing that acts as the activation gate that opens in response to a depolarization. To explore whether the cytoplasmic extension of the S6 segment (the S6 tail) plays a role in coupling voltage sensor and activation gate movements, we examined the effect of cysteine substitution from residues N482 to T489 on the kinetics and voltage-dependence of S4 charge movement and on the kinetics of deactivation of ionic current. Among these mutants, F484C has the steepest voltage-dependent charge movement, the largest Q–V shift, and the fastest OFF gating currents. Further study of the residue at position 484, using mutagenesi...
Voltage-dependent K+ channels transfer the voltage sensor movement into gate opening or closure thro...
AbstractThe activation of Shaker K+ channels is steeply voltage dependent. To determine whether cons...
Studies on voltage-gated K channels such as Shaker have shown that positive charges in the voltage-s...
AbstractThe cytoplasmic ends of the four S6 transmembrane segments of voltage-gated potassium channe...
AbstractThe cytoplasmic ends of the four S6 transmembrane segments of voltage-gated potassium channe...
Activation of voltage-dependent channels involves charge-moving conformational changes of the voltag...
AbstractKv channels detect changes in the membrane potential via their voltage-sensing domains (VSDs...
Using a strategy related to intragenic suppression, we previously obtained evidence for structural i...
K-v channels detect changes in the membrane potential via their voltage-sensing domains (VSDs) that ...
Using a strategy related to intragenic suppression, we previously obtained evidence for structural i...
The four arginine-rich S4 helices of a voltage-gated channel move outward through the membrane in re...
Voltage-dependent K+ channels transfer the voltage sensor movement into gate opening or closure thro...
AbstractVoltage-activated ion channels respond to changes in membrane voltage by coupling the moveme...
The four arginine-rich S4 helices of a voltage-gated channel move outward through the membrane in re...
Voltage-dependent K(+) channels transfer the voltage sensor movement into gate opening or closure th...
Voltage-dependent K+ channels transfer the voltage sensor movement into gate opening or closure thro...
AbstractThe activation of Shaker K+ channels is steeply voltage dependent. To determine whether cons...
Studies on voltage-gated K channels such as Shaker have shown that positive charges in the voltage-s...
AbstractThe cytoplasmic ends of the four S6 transmembrane segments of voltage-gated potassium channe...
AbstractThe cytoplasmic ends of the four S6 transmembrane segments of voltage-gated potassium channe...
Activation of voltage-dependent channels involves charge-moving conformational changes of the voltag...
AbstractKv channels detect changes in the membrane potential via their voltage-sensing domains (VSDs...
Using a strategy related to intragenic suppression, we previously obtained evidence for structural i...
K-v channels detect changes in the membrane potential via their voltage-sensing domains (VSDs) that ...
Using a strategy related to intragenic suppression, we previously obtained evidence for structural i...
The four arginine-rich S4 helices of a voltage-gated channel move outward through the membrane in re...
Voltage-dependent K+ channels transfer the voltage sensor movement into gate opening or closure thro...
AbstractVoltage-activated ion channels respond to changes in membrane voltage by coupling the moveme...
The four arginine-rich S4 helices of a voltage-gated channel move outward through the membrane in re...
Voltage-dependent K(+) channels transfer the voltage sensor movement into gate opening or closure th...
Voltage-dependent K+ channels transfer the voltage sensor movement into gate opening or closure thro...
AbstractThe activation of Shaker K+ channels is steeply voltage dependent. To determine whether cons...
Studies on voltage-gated K channels such as Shaker have shown that positive charges in the voltage-s...