The presence of negative surface charge near the tetrodotoxin/saxitoxin binding site of canine heart Na channels was revealed by analysis of the kinetics of toxin block of single batrachotoxin-activated Na channels in planar bilayers as a function of [NaCl]. The voltage-dependence of toxin binding and the toxin dissociation rate are nearly constant as [NaCl] is varied from 0.05 to 3 M. In contrast, the association rate constant of the toxins is inversely dependent on [NaCl], with the rate for the divalent toxin, saxitoxin2+, affected more steeply than that of the monovalent toxin, tetrodotoxin1+. These results for toxin-insensitive Na channels from canine heart parallel previous findings for toxin-sensitive Na channels from canine brain. Th...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
We have probed a cysteine residue that confers resistance to tetrodotoxin (TTX) block in heart Na ch...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
The mechanism of block of voltage-dependent Na+ channels by extracellular divalent cations was inves...
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...
Biophysical evidence has placed the binding site for the naturally occurring marine toxins tetrodoto...
Mammalian heart Na+ channels exhibit approximately 100-fold higher affinity for block by external Zn...
Mammalian heart Na+ channels exhibit approximately 100-fold higher affinity for block by external Zn...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
Mammalian heart sodium channels inserted into planar bilayers exhibit a distinctive subconductance s...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from...
AbstractThe marine guanidinium toxins, saxitoxin (STX) and tetrodotoxin (TTX), have played crucial r...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
We have probed a cysteine residue that confers resistance to tetrodotoxin (TTX) block in heart Na ch...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
The mechanism of block of voltage-dependent Na+ channels by extracellular divalent cations was inves...
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...
Biophysical evidence has placed the binding site for the naturally occurring marine toxins tetrodoto...
Mammalian heart Na+ channels exhibit approximately 100-fold higher affinity for block by external Zn...
Mammalian heart Na+ channels exhibit approximately 100-fold higher affinity for block by external Zn...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
Mammalian heart sodium channels inserted into planar bilayers exhibit a distinctive subconductance s...
μ-Conotoxins (μ-CTXs) are Na+ channel-blocking, 22-amino acid peptides produced by the sea snail Con...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
We have previously studied single, voltage-dependent, saxitoxin-(STX) blockable sodium channels from...
AbstractThe marine guanidinium toxins, saxitoxin (STX) and tetrodotoxin (TTX), have played crucial r...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
We have probed a cysteine residue that confers resistance to tetrodotoxin (TTX) block in heart Na ch...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...