Voltage-gated ion channels determine the membrane excitability of cells. Although many Conus peptides that interact with voltage-gated Na+ and Ca2+ channels have been characterized, relatively few have been identified that interact with K+ channels. We describe a novel Conus peptide that interacts with the Shaker K+ channel, M-kappa-conotoxin RIIIK from Conus radiatus. The peptide was chemically synthesized. Although M- kappa-conotoxin RIIIK is structurally similar to the mu- conotoxins that are sodium channel blockers, it does not affect any of the sodium channels tested, but blocks Shaker K+ channels. Studies using Shaker K+ channel mutants with single residue substitutions reveal that the peptide interacts with the pore region of the cha...
Journal Articleĸ-Conotoxin PVIIA (ĸ-PVIIA), a 27-amino acid peptide with three disulfide cross-link...
A novel conotoxin, kappa-conotoxin (kappa-BtX), has been purified and characterized from the venom o...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...
Voltage-gated ion channels determine the membrane excitability of cells. Although many Conus peptide...
Despite the structural divergence of the peptides interacting with the voltage-gated potassium chann...
Journal ArticleVoltage-gated ion channels determine the membrane excitability of cells. Although ma...
KappaM-conotoxin RIIIK blocks TSha1 K+ channels from trout with high affinity by interacting with th...
Abstractκ-Conotoxin PVIIA (κ-PVIIA), a 27-amino acid peptide identified from the venom of Conus purp...
The rising phase of the action potential in excitable cells is mediated by voltage-gated sodium chan...
AbstractBackground: κ-PVIIA is a 27-residue polypeptide isolated from the venom of Conus purpurascen...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
International audienceIn this article we present an overview of some peptides extracted and purified...
μ-Conotoxins (μ-CTX) are potent Na channel inhibitory peptides isolated from the venom of the predat...
Abstractκ−Conotoxin-PVIIA (κ−PVIIA) is a 27-residue basic (+4) peptide from the venom of the predato...
Several families of peptide toxins from cone snails affect voltage-gated sodium (Na-V) channels: mu-...
Journal Articleĸ-Conotoxin PVIIA (ĸ-PVIIA), a 27-amino acid peptide with three disulfide cross-link...
A novel conotoxin, kappa-conotoxin (kappa-BtX), has been purified and characterized from the venom o...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...
Voltage-gated ion channels determine the membrane excitability of cells. Although many Conus peptide...
Despite the structural divergence of the peptides interacting with the voltage-gated potassium chann...
Journal ArticleVoltage-gated ion channels determine the membrane excitability of cells. Although ma...
KappaM-conotoxin RIIIK blocks TSha1 K+ channels from trout with high affinity by interacting with th...
Abstractκ-Conotoxin PVIIA (κ-PVIIA), a 27-amino acid peptide identified from the venom of Conus purp...
The rising phase of the action potential in excitable cells is mediated by voltage-gated sodium chan...
AbstractBackground: κ-PVIIA is a 27-residue polypeptide isolated from the venom of Conus purpurascen...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
International audienceIn this article we present an overview of some peptides extracted and purified...
μ-Conotoxins (μ-CTX) are potent Na channel inhibitory peptides isolated from the venom of the predat...
Abstractκ−Conotoxin-PVIIA (κ−PVIIA) is a 27-residue basic (+4) peptide from the venom of the predato...
Several families of peptide toxins from cone snails affect voltage-gated sodium (Na-V) channels: mu-...
Journal Articleĸ-Conotoxin PVIIA (ĸ-PVIIA), a 27-amino acid peptide with three disulfide cross-link...
A novel conotoxin, kappa-conotoxin (kappa-BtX), has been purified and characterized from the venom o...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...