Functional expression and properties of the human skeletal muscle sodium channel |
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Authors: | Mohamed Chahine Paul B. Bennett Alfred L. George Jr Richard Horn |
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Affiliation: | (1) Department of Physiology, Jefferson Medical College, 1020 Locust Street, 19107 Philadelphia, PA, USA;(2) Department of Medicine, S-3223 MCN, Vanderbilt University School of Medicine, 21st Street and Grand Avenue, 37232 Nashville, TN, USA;(3) Department of Pharmacology, S-3223 MCN, Vanderbilt University School of Medicine, 21st Street and Grand Avenue, 37232 Nashville, TN, USA;(4) Present address: Centre de Recherche, Hôpital Laval, 2725 Chemin Sainte-Foy, GIV 4G5 Sainte-Foy, Québec, Canada |
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Abstract: | Full-length deoxyribonucleic acid, complementary (cDNA) constructs encoding the-subunit of the adult human skeletal muscle Na+ channel, hSkM1, were prepared. Functional expression was studied by electrophysiological recordings from cRNA-injectedXenopus oocytes and from transiently transfected tsA201 cells. The Na+ currents of hSkM1 had abnormally slow inactivation kinetics in oocytes, but relatively normal kinetics when expressed in the mammalian cell line. The inactivation kinetics of Na+ currents in oocytes, during a depolarization, were fitted by a weighted sum of two decaying exponentials. The time constant of the fast component was comparable to that of the single component observed in mammalian cells. The block of hSkM1 Na+ currents by the extracellular toxins tetrodotoxin (TTX) and -conotoxin (CTX) was measured. The IC50 values were 25 nM (TTX) and 1.2 M (CTX) in oocytes. The potency of TTX is similar to that observed for the rat homolog rSkM1, but the potency of CTX is 22-fold lower in hSkM1, primarily due to a higher rate of toxin dissociation in hSkM1. Single-channel recordings were obtained from outside-out patches of oocytes expressing hSkM1. The single-channel conductance, 24.9 pS, is similar to that observed for rSkM1 expressed in oocytes. |
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Keywords: | Sodium channel Human skeletal muscle Heterologous expression /content/q473118778u47866/xxlarge956.gif" alt=" mgr" align=" MIDDLE" BORDER=" 0" >-Conotoxin Xenopus oocytes |
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