μ-Conotoxin (μ-CTX) specifically occludes the pore of voltage-dependent Na+ channels. In the rat skeletal muscle Na+ channel (μ1), we examined the contribution of charged residues between the P loops and S6 in all four domains to μ-CTX block. Conversion of the negatively charged domain II (DII) residues Asp-762 and Glu-765 to cysteine increased the IC50 for μ-CTX block by -100-fold (wild-type = 22.3 ± 7.0 nM; D762C = 2558 ± 250 nM; E765C = 2020 ± 379 nM). Restoration or reversal of charge by external modification of the cysteine-substituted channels with methanethiosulfonate reagents (methanethiosulfonate ethylsulfonate (MTSES) and methanethiosulfonate ethylammonium (MTSEA)) did not affect μ-CTX block (D762C: IC(50, MTSEA+) = 2165.1 ± 250 n...
μ-Conotoxin (μ-CTX) inhibits Na+ flux by obstructing the Na+ channel pore. Previous studies of μ-CTX...
Abstractμ-Conotoxin (μ-CTX) inhibits Na+ flux by obstructing the Na+ channel pore. Previous studies ...
<div><p>Several subtypes of voltage-gated Na<sup>+</sup> (Na<sub>V</sub>) channels are important tar...
We have studied μ-conotoxin (μ-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents in ...
We have studied mu-conotoxin (mu-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents i...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
μ-Conotoxins (μ-CTXs) block skeletal muscle Na+ channels with an affinity 1-2 orders of magnitude hi...
μ-Conotoxins (μ-CTX) are peptides that inhibit Na+ flux by blocking the Na+ channel pore. Toxin resi...
μ-Conotoxins (μ-CTXs) specifically inhibit Na+ flux by occluding the pore of voltage-gated Na+ chann...
AbstractThe tetradomain voltage-gated sodium channels from rat skeletal muscle (rSkM1) and from huma...
μ-Conotoxins (μ-CTX) are potent oligopeptide blockers of sodium channels. The best characterized for...
AbstractExternal μ-conotoxins and internal amine blockers inhibit each other's block of voltage-gate...
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...
Abstractμ-Conotoxins (μ-CTX) are peptides that inhibit Na+ flux by blocking the Na+ channel pore. To...
μ-Conotoxin (μ-CTX) inhibits Na+ flux by obstructing the Na+ channel pore. Previous studies of μ-CTX...
Abstractμ-Conotoxin (μ-CTX) inhibits Na+ flux by obstructing the Na+ channel pore. Previous studies ...
<div><p>Several subtypes of voltage-gated Na<sup>+</sup> (Na<sub>V</sub>) channels are important tar...
We have studied μ-conotoxin (μ-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents in ...
We have studied mu-conotoxin (mu-CTX) block of rat skeletal muscle sodium channel (rSkM1) currents i...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
μ-Conotoxins (μ-CTXs) block skeletal muscle Na+ channels with an affinity 1-2 orders of magnitude hi...
μ-Conotoxins (μ-CTX) are peptides that inhibit Na+ flux by blocking the Na+ channel pore. Toxin resi...
μ-Conotoxins (μ-CTXs) specifically inhibit Na+ flux by occluding the pore of voltage-gated Na+ chann...
AbstractThe tetradomain voltage-gated sodium channels from rat skeletal muscle (rSkM1) and from huma...
μ-Conotoxins (μ-CTX) are potent oligopeptide blockers of sodium channels. The best characterized for...
AbstractExternal μ-conotoxins and internal amine blockers inhibit each other's block of voltage-gate...
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...
Abstractμ-Conotoxins (μ-CTX) are peptides that inhibit Na+ flux by blocking the Na+ channel pore. To...
μ-Conotoxin (μ-CTX) inhibits Na+ flux by obstructing the Na+ channel pore. Previous studies of μ-CTX...
Abstractμ-Conotoxin (μ-CTX) inhibits Na+ flux by obstructing the Na+ channel pore. Previous studies ...
<div><p>Several subtypes of voltage-gated Na<sup>+</sup> (Na<sub>V</sub>) channels are important tar...