AbstractBackground: κ-PVIIA is a 27-residue polypeptide isolated from the venom of Conus purpurascens and is the first member of a new class of conotoxins that block potassium channels. By comparison to other ion channels of eukaryotic cell membranes, voltage-sensitive potassium channels are relatively simple and methodology has been developed for mapping their interactions with small-peptide toxins. PVIIA, therefore, is a valuable new probe of potassium channel structure. This study of the solution structure and mode of channel binding of PVIIA forms the basis for mapping the interacting residues at the conotoxin–ion channel interface.Results: The three-dimensional structure of PVIIA resembles the triple-stranded β sheet/cystine-knot motif...
<div><p>Several subtypes of voltage-gated Na<sup>+</sup> (Na<sub>V</sub>) channels are important tar...
Several subtypes of voltage-gated Na+ (NaV) channels are important targets for pain management. μ-Co...
SummaryRecently, a solid-state NMR study revealed that scorpion toxin binding leads to conformationa...
AbstractBackground: κ-PVIIA is a 27-residue polypeptide isolated from the venom of Conus purpurascen...
AbstractBackground: The venoms of Conus snails contain small, disulfide-rich inhibitors of voltage-d...
AbstractThe architecture of the pore-region of a voltage-gated K+ channel, Kv1.3, was probed using f...
Despite the structural divergence of the peptides interacting with the voltage-gated potassium chann...
Understanding subtype specific ion channel pore blockage by natural peptide-based toxins is crucial ...
AbstractPolypeptide toxins isolated from the venom of cone snails, known as μ-conotoxins, block volt...
Journal Articleĸ-conotoxin PVIIA is the first conotoxin known to interact with voltage-gated potassi...
Background: The venoms of Conus snails contain small, disulfide-rich inhibitors of voltage-dependent...
kappa-Conotoxin-PVIIA (kappa-PVIIA) belongs to a family of peptides derived from a hunting marine sn...
Indexación: Scopus.κ-Conotoxin-PVIIA (κ-PVIIA) is a potassium-channel blocking peptide from the veno...
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...
<div><p>Several subtypes of voltage-gated Na<sup>+</sup> (Na<sub>V</sub>) channels are important tar...
Several subtypes of voltage-gated Na+ (NaV) channels are important targets for pain management. μ-Co...
SummaryRecently, a solid-state NMR study revealed that scorpion toxin binding leads to conformationa...
AbstractBackground: κ-PVIIA is a 27-residue polypeptide isolated from the venom of Conus purpurascen...
AbstractBackground: The venoms of Conus snails contain small, disulfide-rich inhibitors of voltage-d...
AbstractThe architecture of the pore-region of a voltage-gated K+ channel, Kv1.3, was probed using f...
Despite the structural divergence of the peptides interacting with the voltage-gated potassium chann...
Understanding subtype specific ion channel pore blockage by natural peptide-based toxins is crucial ...
AbstractPolypeptide toxins isolated from the venom of cone snails, known as μ-conotoxins, block volt...
Journal Articleĸ-conotoxin PVIIA is the first conotoxin known to interact with voltage-gated potassi...
Background: The venoms of Conus snails contain small, disulfide-rich inhibitors of voltage-dependent...
kappa-Conotoxin-PVIIA (kappa-PVIIA) belongs to a family of peptides derived from a hunting marine sn...
Indexación: Scopus.κ-Conotoxin-PVIIA (κ-PVIIA) is a potassium-channel blocking peptide from the veno...
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...
<div><p>Several subtypes of voltage-gated Na<sup>+</sup> (Na<sub>V</sub>) channels are important tar...
Several subtypes of voltage-gated Na+ (NaV) channels are important targets for pain management. μ-Co...
SummaryRecently, a solid-state NMR study revealed that scorpion toxin binding leads to conformationa...