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Results of search for 'su:"Charybdotoxin"', page 1 of 58
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Authors
Asano, M
Cahalan, M D
Garcia, M L
Garcia-Calvo, M
Giangiacomo, K M
Gilquin, B
Granados-Soto, Vinicio
Griffith, T M
Grissmer, S
Harvey, A L
Ito, K
Kaczorowski, G J
Knaus, H G
Lazdunski, M
MacKinnon, R
Matsuda, T
McManus, O B
Miller, C
Ménez, A
Possani, L D
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Animals
Apamin
Calcium
Charybdotoxin
Humans
In Vitro Techniques
Male
Membrane Potentials
Potassium
Potassium Channel Blockers
Potassium Channels
Rats
Scorpion Venoms
Tetraethylammonium
antagonists & inhibitors
cytology
drug effects
metabolism
pharmacology
physiology
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Your search returned 1145 results.
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1.
Synthesis of a metal binding protein designed on the alpha/beta scaffold of charybdotoxin.
[electronic resource]
by
Pierret, B
Virelizier, H
Vita, C
Producer:
19960925
In:
International journal of peptide and protein research
vol. 46
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2.
Presence of the voltage-gated potassium channels sensitive to charybdotoxin in inhibitory presynaptic terminals of cultured rat hippocampal neurons.
[electronic resource]
by
Ohno-Shosaku, T
Kim, I
Sawada, S
Yamamoto, C
Producer:
19961204
In:
Neuroscience letters
vol. 207
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3.
Charybdotoxin blocks both Ca-activated K channels and Ca-independent voltage-gated K channels in rat brain synaptosomes.
[electronic resource]
by
Schneider, M J
Rogowski, R S
Krueger, B K
Blaustein, M P
Producer:
19890907
In:
FEBS letters
vol. 250
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4.
Functional unit size of the charybdotoxin receptor in smooth muscle.
[electronic resource]
by
Garcia-Calvo, M
Knaus, H G
Garcia, M L
Kaczorowski, G J
Kempner, E S
Producer:
19940627
In:
Proceedings of the National Academy of Sciences of the United States of America
vol. 91
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5.
A small-conductance charybdotoxin-sensitive, apamin-resistant Ca(2+)-activated K+ channel in aortic smooth muscle cells (A7r5 line and primary culture).
[electronic resource]
by
Van Renterghem, C
Lazdunski, M
Producer:
19920729
In:
Pflugers Archiv : European journal of physiology
vol. 420
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6.
The beta subunit of the high-conductance calcium-activated potassium channel contributes to the high-affinity receptor for charybdotoxin.
[electronic resource]
by
Hanner, M
Schmalhofer, W A
Munujos, P
Knaus, H G
Kaczorowski, G J
Garcia, M L
Producer:
19970508
In:
Proceedings of the National Academy of Sciences of the United States of America
vol. 94
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7.
Trans-toxin ion-sensitivity of charybdotoxin-blocked potassium-channels reveals unbinding transitional states.
[electronic resource]
by
Moldenhauer, Hans
Díaz-Franulic, Ignacio
Poblete, Horacio
Naranjo, David
Producer:
20200220
In:
eLife
vol. 8
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8.
The charybdotoxin family of K+ channel-blocking peptides.
[electronic resource]
by
Miller, C
Producer:
19950825
In:
Neuron
vol. 15
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9.
Calcium-independent cell volume regulation in human lymphocytes. Inhibition by charybdotoxin.
[electronic resource]
by
Grinstein, S
Smith, J D
Producer:
19900314
In:
The Journal of general physiology
vol. 95
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10.
Charybdotoxin blocks cation-channels in the vacuolar membrane of suspension cells of Chenopodium rubrum L.
[electronic resource]
by
Weiser, T
Bentrup, F W
Producer:
19910815
In:
Biochimica et biophysica acta
vol. 1066
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11.
Charybdotoxin and its effects on potassium channels.
[electronic resource]
by
Garcia, M L
Knaus, H G
Munujos, P
Slaughter, R S
Kaczorowski, G J
Producer:
19950901
In:
The American journal of physiology
vol. 269
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12.
Three-dimensional structure of natural charybdotoxin in aqueous solution by 1H-NMR. Charybdotoxin possesses a structural motif found in other scorpion toxins.
[electronic resource]
by
Bontems, F
Roumestand, C
Boyot, P
Gilquin, B
Doljansky, Y
Menez, A
Toma, F
Producer:
19910415
In:
European journal of biochemistry
vol. 196
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13.
Charybdotoxin and noxiustoxin, two homologous peptide inhibitors of the K+ (Ca2+) channel.
[electronic resource]
by
Valdivia, H H
Smith, J S
Martin, B M
Coronado, R
Possani, L D
Producer:
19880302
In:
FEBS letters
vol. 226
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14.
Influence of protein surface charge on the bimolecular kinetics of a potassium channel peptide inhibitor.
[electronic resource]
by
Escobar, L
Root, M J
MacKinnon, R
Producer:
19930820
In:
Biochemistry
vol. 32
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15.
A ciliary K+ conductance sensitive to charibdotoxin underlies inhibitory responses in toad olfactory receptor neurons.
[electronic resource]
by
Morales, B
Labarca, P
Bacigalupo, J
Producer:
19950313
In:
FEBS letters
vol. 359
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16.
Mechanism and energetics of charybdotoxin unbinding from a potassium channel from molecular dynamics simulations.
[electronic resource]
by
Chen, Po-Chia
Kuyucak, Serdar
Producer:
20090629
In:
Biophysical journal
vol. 96
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17.
Accurate determination of the binding free energy for KcsA-charybdotoxin complex from the potential of mean force calculations with restraints.
[electronic resource]
by
Chen, Po-Chia
Kuyucak, Serdar
Producer:
20110905
In:
Biophysical journal
vol. 100
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18.
Toxins in the characterization of potassium channels.
[electronic resource]
by
Castle, N A
Haylett, D G
Jenkinson, D H
Producer:
19890526
In:
Trends in neurosciences
vol. 12
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19.
Determination of the subunit stoichiometry of a voltage-activated potassium channel.
[electronic resource]
by
MacKinnon, R
Producer:
19910419
In:
Nature
vol. 350
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20.
An emerging pharmacology of peptide toxins targeted against potassium channels.
[electronic resource]
by
Moczydlowski, E
Lucchesi, K
Ravindran, A
Producer:
19890309
In:
The Journal of membrane biology
vol. 105
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