AbstractMolecular dynamics calculations have been carried out on a model of the LS3 synthetic ion channel in a membrane mimetic environment. In the absence of an external electrostatic field, the LS3 channel, which consists of a bundle of six α-helices with sequence Ac-(LSSLLSL)3-CONH2, exhibits large structural fluctuations. However, in the presence of the field, the bundle adopts a well defined coiled-coil structure with an inner pore of water. The observed structural changes induced by the applied field are consistent with the proposed gating mechanism of the ion channel
AbstractAlamethicin channels have been modelled as approximately parallel bundles of transbilayer he...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractA molecular dynamics simulation has been performed on a synthetic membrane-spanning ion chan...
AbstractA molecular dynamics simulation has been performed on a synthetic membrane-spanning ion chan...
AbstractMolecular dynamics calculations were carried out on models of two synthetic leucine-serine i...
AbstractIn this article, we present the results of the molecular dynamics simulations of amphiphilic...
Ion channels are pore-forming protein assemblies that mediate the transport of small ions across cel...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractIon channels are gated, i.e. they can switch conformation between a closed and an open state...
The recent determination of several crystal structures of voltage-gated ion channels has catalyzed c...
The recent determination of several crystal structures of voltage-gated ion channels has catalyzed c...
AbstractIn this article, we present the results of the molecular dynamics simulations of amphiphilic...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
AbstractAlamethicin channels have been modelled as approximately parallel bundles of transbilayer he...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractA molecular dynamics simulation has been performed on a synthetic membrane-spanning ion chan...
AbstractA molecular dynamics simulation has been performed on a synthetic membrane-spanning ion chan...
AbstractMolecular dynamics calculations were carried out on models of two synthetic leucine-serine i...
AbstractIn this article, we present the results of the molecular dynamics simulations of amphiphilic...
Ion channels are pore-forming protein assemblies that mediate the transport of small ions across cel...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractIon channels are gated, i.e. they can switch conformation between a closed and an open state...
The recent determination of several crystal structures of voltage-gated ion channels has catalyzed c...
The recent determination of several crystal structures of voltage-gated ion channels has catalyzed c...
AbstractIn this article, we present the results of the molecular dynamics simulations of amphiphilic...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
AbstractAlamethicin channels have been modelled as approximately parallel bundles of transbilayer he...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...