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A1152D mutation of the Na+ channel causes paramyotonia congenita and emphasizes the role of DIII/S4-S5 linker in fast inactivation.
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Differential effects of paramyotonia congenita mutations F1473S and F1705I on sodium channel gating.
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Central charged residues in DIIIS4 regulate deactivation gating in skeletal muscle sodium channels.
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The chemistry of electrical signaling in sodium channels from bacteria and beyond.
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Direct evidence that scorpion α-toxins (site-3) modulate sodium channel inactivation by hindrance of voltage-sensor movements.
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Pathophysiological role of omega pore current in channelopathies.
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Charge immobilization of skeletal muscle Na+ channels: role of residues in the inactivation linker.
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Central charged residues in DIIIS4 regulate deactivation gating in skeletal muscle sodium channels.
Cell Mol Neurobiol. 2007 Feb;27(1):87-106. doi: 10.1007/s10571-006-9120-2. Epub 2006 Dec 7.
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A1152D mutation of the Na+ channel causes paramyotonia congenita and emphasizes the role of DIII/S4-S5 linker in fast inactivation.
J Physiol. 2005 Jun 1;565(Pt 2):415-27. doi: 10.1113/jphysiol.2004.081018. Epub 2005 Mar 24.

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A quantitative description of membrane current and its application to conduction and excitation in nerve.
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A defect in skeletal muscle sodium channel deactivation exacerbates hyperexcitability in human paramyotonia congenita.
J Physiol. 1998 Feb 1;506 ( Pt 3)(Pt 3):627-38. doi: 10.1111/j.1469-7793.1998.627bv.x.
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Role in fast inactivation of the IV/S4-S5 loop of the human muscle Na+ channel probed by cysteine mutagenesis.
J Physiol. 1997 Dec 1;505 ( Pt 2)(Pt 2):345-52. doi: 10.1111/j.1469-7793.1997.345bb.x.
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Sodium channel inactivation is altered by substitution of voltage sensor positive charges.
J Gen Physiol. 1997 Oct;110(4):403-13. doi: 10.1085/jgp.110.4.403.
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Probing the outer vestibule of a sodium channel voltage sensor.
Biophys J. 1997 Nov;73(5):2260-8. doi: 10.1016/S0006-3495(97)78258-4.
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Interaction between the sodium channel inactivation linker and domain III S4-S5.
Biophys J. 1997 Oct;73(4):1885-95. doi: 10.1016/S0006-3495(97)78219-5.
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A unique role for the S4 segment of domain 4 in the inactivation of sodium channels.
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