Pain-causing stinging nettle toxins target TMEM233 to modulate Na<sub>V</sub>1.7 function.

Jami, Sina; Deuis, Jennifer R; Klasfauseweh, Tabea; Cheng, Xiaoyang; Kurdyukov, Sergey; Chung, Felicity; Okorokov, Andrei L; Li, Shengnan et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

Voltage-gated sodium (Na<sub>V</sub>) channels are critical regulators of neuronal excitability and are targeted by many toxins that directly interact with the pore-forming α subunit, typically via extracellular loops of the voltage-sensing domains, or residues forming part of the pore domain. Excelsatoxin A (ExTxA), a pain-causing knottin peptide from the Australian stinging tree Dendrocnide excelsa, is the first reported plant-derived Na<sub>V</sub> channel modulating peptide toxin. Here we show that TMEM233, a member of the dispanin family of transmembrane proteins expressed in sensory neurons, is essential for pharmacological activity of ExTxA at Na<sub>V</sub> channels, and that co-expression of TMEM233 modulates the gating properties of Na<sub>V</sub>1.7. These findings identify TMEM233 as a previously unknown Na<sub>V</sub>1.7-interacting protein, position TMEM233 and the dispanins as accessory proteins that are indispensable for toxin-mediated effects on Na<sub>V</sub> channel gating, and provide important insights into the function of Na<sub>V</sub> channels in sensory neurons.

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