AbstractThe marine guanidinium toxins, saxitoxin (STX) and tetrodotoxin (TTX), have played crucial roles in the study of voltage-gated Na+ channels. Because they have similar actions, sizes, and functional groups, they have been thought to associate with the channel in the same manner, and early mutational studies supported this idea. Recent experiments by Kirsch et al. (1994. Biophys. J. 67:2305–2315) have suggested that the toxins bind differently to the isoform-specific domain I Phe/Tyr/Cys location. In the adult skeletal muscle Na+ channel isoform (μI), we compared the effects on both TTX and STX affinities of mutations in eight positions known to influence toxin binding. The results permitted the assignment of energies contributed by e...
bTyrosine 401 of the skeletal muscle isoform (mu 1) of the rat muscle Na channel is an important det...
AbstractSaxitoxin (STX) selectively blocks the voltage-gated sodium channel at the outer vestibule l...
Voltage-gated sodium channels control the upstroke of the action potential in excitable cells of ner...
AbstractThe marine guanidinium toxins, saxitoxin (STX) and tetrodotoxin (TTX), have played crucial r...
We describe a mutation in the outer vestibule region of the adult rat skeletal muscle voltage-gated ...
AbstractThe highly selective sodium channel blocker, tetrodotoxin (TTX) has been instrumental in cha...
AbstractThe voltage-gated Na+ channel α-subunit consists of four homologous domains arranged circumf...
AbstractSaxitoxin (STX) selectively blocks the voltage-gated sodium channel at the outer vestibule l...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
We describe a mutation in the outer vestibule region of the adult rat skeletal muscle voltage-gated ...
Biophysical evidence has placed the binding site for the naturally occurring marine toxins tetrodoto...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
AbstractThe highly selective sodium channel blocker, tetrodotoxin (TTX) has been instrumental in cha...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
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...
AbstractSaxitoxin (STX) selectively blocks the voltage-gated sodium channel at the outer vestibule l...
Voltage-gated sodium channels control the upstroke of the action potential in excitable cells of ner...
AbstractThe marine guanidinium toxins, saxitoxin (STX) and tetrodotoxin (TTX), have played crucial r...
We describe a mutation in the outer vestibule region of the adult rat skeletal muscle voltage-gated ...
AbstractThe highly selective sodium channel blocker, tetrodotoxin (TTX) has been instrumental in cha...
AbstractThe voltage-gated Na+ channel α-subunit consists of four homologous domains arranged circumf...
AbstractSaxitoxin (STX) selectively blocks the voltage-gated sodium channel at the outer vestibule l...
Voltage-gated Na(+) channels (NaV channels) are specifically blocked by guanidinium toxins such as t...
We describe a mutation in the outer vestibule region of the adult rat skeletal muscle voltage-gated ...
Biophysical evidence has placed the binding site for the naturally occurring marine toxins tetrodoto...
ABSTRACTThe blockage of skeletal muscle sodium channels by tetrodotoxin (TTX) and saxitoxin (STX) ha...
AbstractThe highly selective sodium channel blocker, tetrodotoxin (TTX) has been instrumental in cha...
The rat brain IIa (BrIIa) Na channel alpha-subunit and the brain beta 1 subunit were coexpressed in ...
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...
AbstractSaxitoxin (STX) selectively blocks the voltage-gated sodium channel at the outer vestibule l...
Voltage-gated sodium channels control the upstroke of the action potential in excitable cells of ner...