AbstractVoltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in membrane voltage. We used molecular dynamics simulations to examine interactions with lipids of several VS homologs. VSs in intact channels in the activated state are exposed to phospholipids, leading to a characteristic local distortion of the lipid bilayer which decreases its thickness by ∼10 Å. This effect is mediated by a conserved hydrophilic stretch in the S4–S5 segment linking the VS and the pore domains, and may favor gating charges crossing the membrane. In cationic lipid bilayers lacking phosphate groups, VSs form fewer contacts with lipid headgroups. The S3–S4 paddle motifs show persistent interactions of individual lipid molecules, i...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
Voltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in membrane vo...
AbstractVoltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in mem...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
har rop ne. fs s omm in actions with acidic side chains at a central site capped by Kv and related c...
Coarse-grained molecular dynamics simulations are used to explore the interaction with a phospholipi...
SummaryA strong interplay between the voltage-sensor domain (VSD) and the pore domain (PD) underlies...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
AbstractCells commonly use lipids to modulate the function of ion channels. The lipid content influe...
Voltage sensor domain (VSD) in channel and non-channel membrane proteins shares a common function in...
A number of membrane proteins act via binding at the water/lipid bilayer interface. An important exa...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
Voltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in membrane vo...
AbstractVoltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in mem...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
har rop ne. fs s omm in actions with acidic side chains at a central site capped by Kv and related c...
Coarse-grained molecular dynamics simulations are used to explore the interaction with a phospholipi...
SummaryA strong interplay between the voltage-sensor domain (VSD) and the pore domain (PD) underlies...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
AbstractCells commonly use lipids to modulate the function of ion channels. The lipid content influe...
Voltage sensor domain (VSD) in channel and non-channel membrane proteins shares a common function in...
A number of membrane proteins act via binding at the water/lipid bilayer interface. An important exa...
ABSTRACT All-atom molecular dynamics simulations are used to better understand the dynamic environme...
AbstractAll-atom molecular dynamics simulations are used to better understand the dynamic environmen...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...