We have studied mu-conotoxin (mu-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents in which single amino acids within the pore (P-loop) were substituted with cysteine. Among 17 cysteine mutants expressed in Xenopus oocytes, 7 showed significant alterations in sensitivity to mu-CTX compared to wild-type rSkM1 channel (IC50 = 17.5 +/- 2.8 nM). E758C and D1241C were less sensitive to mu-CTX block (IC50 = 220 +/- 39 nM and 112 +/- 24 nM, respectively), whereas the tryptophan mutants W402C, W1239C, and W1531C showed enhanced mu-CTX sensitivity (IC50 = 1.9 +/- 0.1, 4.9 +/- 0.9, and 5.5 +/- 0.4 nM, respectively). D400C and Y401C also showed statistically significant yet modest (approximately twofold) changes in sensitivity to mu-CT...
μ-Conotoxins (μ-CTXs) block skeletal muscle Na+ channels with an affinity 1-2 orders of magnitude hi...
μ-Conotoxins (μ-CTXs) specifically inhibit Na+ flux by occluding the pore of voltage-gated Na+ chann...
μ-Conotoxins (μ-CTX) are potent oligopeptide blockers of sodium channels. The best characterized for...
We have studied μ-conotoxin (μ-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents in ...
μ-Conotoxin (μ-CTX) specifically occludes the pore of voltage-dependent Na+ channels. In the rat ske...
bTyrosine 401 of the skeletal muscle isoform (mu 1) of the rat muscle Na channel is an important det...
bTyrosine 401 of the skeletal muscle isoform (mu 1) of the rat muscle Na channel is an important det...
We describe a mutation in the outer vestibule region of the adult rat skeletal muscle voltage-gated ...
To explore the role of pore-lining amino acids in Na+ channel ion- selectivity, pore residues were r...
AbstractThe tetradomain voltage-gated sodium channels from rat skeletal muscle (rSkM1) and from huma...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
μ-Conotoxins (μ-CTX) are peptides that inhibit Na+ flux by blocking the Na+ channel pore. Toxin resi...
The P segments of the voltage-dependent Na+ channel line the outer mouth and selectivity filter of t...
grantor: University of TorontoThe structure and functions of Na+ channel were studied usin...
grantor: University of TorontoThe structure and functions of Na+ channel were studied usin...
μ-Conotoxins (μ-CTXs) block skeletal muscle Na+ channels with an affinity 1-2 orders of magnitude hi...
μ-Conotoxins (μ-CTXs) specifically inhibit Na+ flux by occluding the pore of voltage-gated Na+ chann...
μ-Conotoxins (μ-CTX) are potent oligopeptide blockers of sodium channels. The best characterized for...
We have studied μ-conotoxin (μ-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents in ...
μ-Conotoxin (μ-CTX) specifically occludes the pore of voltage-dependent Na+ channels. In the rat ske...
bTyrosine 401 of the skeletal muscle isoform (mu 1) of the rat muscle Na channel is an important det...
bTyrosine 401 of the skeletal muscle isoform (mu 1) of the rat muscle Na channel is an important det...
We describe a mutation in the outer vestibule region of the adult rat skeletal muscle voltage-gated ...
To explore the role of pore-lining amino acids in Na+ channel ion- selectivity, pore residues were r...
AbstractThe tetradomain voltage-gated sodium channels from rat skeletal muscle (rSkM1) and from huma...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
μ-Conotoxins (μ-CTX) are peptides that inhibit Na+ flux by blocking the Na+ channel pore. Toxin resi...
The P segments of the voltage-dependent Na+ channel line the outer mouth and selectivity filter of t...
grantor: University of TorontoThe structure and functions of Na+ channel were studied usin...
grantor: University of TorontoThe structure and functions of Na+ channel were studied usin...
μ-Conotoxins (μ-CTXs) block skeletal muscle Na+ channels with an affinity 1-2 orders of magnitude hi...
μ-Conotoxins (μ-CTXs) specifically inhibit Na+ flux by occluding the pore of voltage-gated Na+ chann...
μ-Conotoxins (μ-CTX) are potent oligopeptide blockers of sodium channels. The best characterized for...