Gating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS) and altering the energetics of voltage-dependent gating. These toxins are thought to gain access to the VS via the membrane (i.e., by partitioning from water into the membrane before binding the VS). We used serial multiscale molecular-dynamics (MD) simulations, via a combination of coarse-grained (CG) and atomistic (AT) simulations, to study how the toxin VSTx1, which inhibits the archeabacterial voltage-gated potassium channel KvAP, interacts with an isolated membrane-embedded VS domain. In the CG simulations, VSTx1, which was initially located in water, partitioned into the headgroup/water interface of the lipid bilayer before binding the VS. Th...
SGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium channel ...
AbstractToxins that block voltage-gated potassium (Kv) channels provide a possible template for impr...
Toxins that block voltage-gated potassium (Kv) channels provide a possible template for improved hom...
AbstractGating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS...
Gating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS) and al...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
VSTx1 is a tarantula venom toxin which binds to the archaebacterial voltage-gated potassium channel ...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
A number of membrane proteins act via binding at the water/lipid bilayer interface. An important exa...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
AbstractSGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium ...
SGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium channel ...
SGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium channel ...
AbstractToxins that block voltage-gated potassium (Kv) channels provide a possible template for impr...
Toxins that block voltage-gated potassium (Kv) channels provide a possible template for improved hom...
AbstractGating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS...
Gating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS) and al...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
VSTx1 is a tarantula venom toxin which binds to the archaebacterial voltage-gated potassium channel ...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
A number of membrane proteins act via binding at the water/lipid bilayer interface. An important exa...
SummaryThe nature of voltage sensing by voltage-activated ion channels is a key problem in membrane ...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
The nature of voltage sensing by voltage-activated ion channels is a key problem in membrane protein...
AbstractSGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium ...
SGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium channel ...
SGTx1 is a gating-modifier toxin that has been shown to inhibit the voltage-gated potassium channel ...
AbstractToxins that block voltage-gated potassium (Kv) channels provide a possible template for impr...
Toxins that block voltage-gated potassium (Kv) channels provide a possible template for improved hom...