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Using voltage-sensor toxins and their molecular targets to investigate Nav1.8 gating
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Binary architecture of the Nav1.2-β2 signaling complex
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A surface plasmon resonance approach to monitor toxin interactions with an isolated voltage-gated sodium channel paddle motif
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Animal toxins can alter the function of Nav1.8 and Nav1.9
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Palmitoylation influences the function and pharmacology of sodium channels
(2011) PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA. 108(50). p.20213-20218 -
Functional properties and toxin pharmacology of a dorsal root ganglion sodium channel viewed through its voltage sensors
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Targeting voltage sensors in sodium channels with spider toxins
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Interactions between lipids and voltage sensor paddles detected with tarantula toxins
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Deconstructing voltage sensor function and pharmacology in sodium channels
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Gating of Shaker-type channels requires the flexibility of S6 caused by prolines