ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environment experienced by the Kv1.2 channel in a lipid membrane. The structure of the channel is stable during the trajectories. The pore domain keeps a well-defined conformation, whereas the voltage-sensing domains undergo important lateral fluctuations, consistent with their modular nature. A channel-like region at the center of the S1–S4 helical bundle fills rapidly with water, reminiscent of the concept of high-dielectric aqueous crevices. The first two arginines along S4 (R294 and R297) adopt an interfacial position where they interact favorably with water and the lipid headgroups. The following two arginines (R300 and R303) interact predominant...
AbstractThe recent crystal structures of the voltage-gated potassium channel KvAP and its isolated v...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
Molecular Dynamics simulations were used to study a variety of biophysical systems. The first of the...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
We performed 45 ns atomistic force field based molecular dynamics (MD) simulations to explore the st...
AbstractIn this article, we present the results of the molecular dynamics simulations of amphiphilic...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
AbstractVoltage sensor domains (VSD) are transmembrane proteins that respond to changes in membrane ...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
Structure and dynamics of voltage-gated ion channels, in particular the motion of the S4 helix, is a...
Structure and dynamics of voltage-gated ion channels, in particular the motion of the S4 helix, is a...
AbstractRecently, the structure of the Shaker channel Kv1.2 has been determined at a 2.9-Å resolutio...
Coarse-grained molecular dynamics simulations are used to explore the interaction with a phospholipi...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
AbstractThe recent crystal structures of the voltage-gated potassium channel KvAP and its isolated v...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
Molecular Dynamics simulations were used to study a variety of biophysical systems. The first of the...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
We performed 45 ns atomistic force field based molecular dynamics (MD) simulations to explore the st...
AbstractIn this article, we present the results of the molecular dynamics simulations of amphiphilic...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
AbstractVoltage sensor domains (VSD) are transmembrane proteins that respond to changes in membrane ...
AbstractThe atomic models of the Kv1.2 potassium channel in the active and resting state, originally...
Structure and dynamics of voltage-gated ion channels, in particular the motion of the S4 helix, is a...
Structure and dynamics of voltage-gated ion channels, in particular the motion of the S4 helix, is a...
AbstractRecently, the structure of the Shaker channel Kv1.2 has been determined at a 2.9-Å resolutio...
Coarse-grained molecular dynamics simulations are used to explore the interaction with a phospholipi...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
AbstractThe recent crystal structures of the voltage-gated potassium channel KvAP and its isolated v...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
Molecular Dynamics simulations were used to study a variety of biophysical systems. The first of the...