AbstractVoltage-dependent ion channels open and close in response to changes in membrane electrical potential due to the motion of their voltage-sensing domains (VSDs). VSD charge displacements within the membrane electric field are observed in electrophysiology experiments as gating currents preceding ionic conduction. The elementary charge motions that give rise to the gating current cannot be observed directly, but appear as discrete current pulses that generate fluctuations in gating current measurements. Here we report direct observation of gating-charge displacements in an atomistic molecular dynamics simulation of the isolated VSD from the KvAP channel in a hydrated lipid bilayer on the timescale (10-μs) expected for elementary gatin...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
AbstractVoltage-sensing domains (VSDs) of voltage-gated potassium (Kv) channels undergo a series of ...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
Voltage-sensing domains (VSDs) sense changes in the membrane electrostatic potential and, through co...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
AbstractThe recent crystal structures of the voltage-gated potassium channel KvAP and its isolated v...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractRecently, the structure of the Shaker channel Kv1.2 has been determined at a 2.9-Å resolutio...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
Single ion channel currents can only provide indirect information on channel molecular events (excep...
AbstractVoltage-sensor (VS) domains cause the pore of voltage-gated ion channels to open and close i...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
AbstractVoltage-sensing domains (VSDs) of voltage-gated potassium (Kv) channels undergo a series of ...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
Voltage-sensing domains (VSDs) sense changes in the membrane electrostatic potential and, through co...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
AbstractThe recent crystal structures of the voltage-gated potassium channel KvAP and its isolated v...
Voltage-gated potassium (Kv) channels are ubiquitous transmembrane proteins involved in electric sig...
AbstractRecently, the structure of the Shaker channel Kv1.2 has been determined at a 2.9-Å resolutio...
Voltage-gated ion channels have a paramount importance in many physiological processes such as cell-...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
Single ion channel currents can only provide indirect information on channel molecular events (excep...
AbstractVoltage-sensor (VS) domains cause the pore of voltage-gated ion channels to open and close i...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
AbstractVoltage-sensing domains (VSDs) of voltage-gated potassium (Kv) channels undergo a series of ...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...