AbstractToxins that block voltage-gated potassium (Kv) channels provide a possible template for improved homology models of the Kv pore. In assessing the interactions of Kv channels and their toxins it is important to determine the dynamic flexibility of the toxins. Multiple 10 ns duration molecular dynamics simulations combined with essential dynamics analysis have been used to explore the flexibility of four different Kv channel-blocking toxins. Three toxins (Tc1, AgTx and ChTx) share a common fold. They also share a common pattern of conformational dynamics, as revealed by essential dynamics analysis of the simulation results. This suggests that some aspects of dynamic behaviour are conserved across a single protein fold class. In each o...
<div><p>The 34-residue polypeptide maurotoxin (MTx) isolated from scorpion venoms selectively inhibi...
The 34-residue polypeptide maurotoxin (MTx) isolated from scorpion venoms selectively inhibits the c...
AbstractThe Ca2+-activated channel of intermediate-conductance (KCa3.1) is a target for antisickling...
Toxins that block voltage-gated potassium (Kv) channels provide a possible template for improved hom...
AbstractToxins that block voltage-gated potassium (Kv) channels provide a possible template for impr...
AbstractThe conduction properties of the voltage-gated potassium channel Kv1.3 and its modes of inte...
AbstractBased on a homology model of the Kv1.3 potassium channel, the recognitions of the six scorpi...
ABSTRACT Based on a homology model of the Kv1.3 potassium channel, the recognitions of the six scorp...
Gating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS) and al...
Understanding subtype specific ion channel pore blockage by natural peptide-based toxins is crucial ...
The Kv1.2 channel plays an important role in the maintenance of resting membrane potential and the r...
AbstractThe recognition of the scorpion toxin maurotoxin (MTX) by the voltage-gated potassium (Kv1) ...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
The voltage-gated potassium channel Kv1.3 is an established target for treatment of autoimmune disea...
The ion channels are important membrane bound proteins and multi-therapeutic target for a number of ...
<div><p>The 34-residue polypeptide maurotoxin (MTx) isolated from scorpion venoms selectively inhibi...
The 34-residue polypeptide maurotoxin (MTx) isolated from scorpion venoms selectively inhibits the c...
AbstractThe Ca2+-activated channel of intermediate-conductance (KCa3.1) is a target for antisickling...
Toxins that block voltage-gated potassium (Kv) channels provide a possible template for improved hom...
AbstractToxins that block voltage-gated potassium (Kv) channels provide a possible template for impr...
AbstractThe conduction properties of the voltage-gated potassium channel Kv1.3 and its modes of inte...
AbstractBased on a homology model of the Kv1.3 potassium channel, the recognitions of the six scorpi...
ABSTRACT Based on a homology model of the Kv1.3 potassium channel, the recognitions of the six scorp...
Gating-modifier toxins inhibit voltage-gated ion channels by binding the voltage sensors (VS) and al...
Understanding subtype specific ion channel pore blockage by natural peptide-based toxins is crucial ...
The Kv1.2 channel plays an important role in the maintenance of resting membrane potential and the r...
AbstractThe recognition of the scorpion toxin maurotoxin (MTX) by the voltage-gated potassium (Kv1) ...
Molecular dynamics (MO) simulations were used to study the interaction of voltage-gated potassium (K...
The voltage-gated potassium channel Kv1.3 is an established target for treatment of autoimmune disea...
The ion channels are important membrane bound proteins and multi-therapeutic target for a number of ...
<div><p>The 34-residue polypeptide maurotoxin (MTx) isolated from scorpion venoms selectively inhibi...
The 34-residue polypeptide maurotoxin (MTx) isolated from scorpion venoms selectively inhibits the c...
AbstractThe Ca2+-activated channel of intermediate-conductance (KCa3.1) is a target for antisickling...