In vivo spatiotemporal control of voltage-gated ion channels by using photoactivatable peptidic toxins

Author:

Montnach JérômeORCID,Blömer Laila Ananda,Lopez Ludivine,Filipis LuizaORCID,Meudal HervéORCID,Lafoux Aude,Nicolas Sébastien,Chu Duong,Caumes Cécile,Béroud Rémy,Jopling Chris,Bosmans Frank,Huchet Corinne,Landon CélineORCID,Canepari Marco,De Waard MichelORCID

Abstract

AbstractPhotoactivatable drugs targeting ligand-gated ion channels open up new opportunities for light-guided therapeutic interventions. Photoactivable toxins targeting ion channels have the potential to control excitable cell activities with low invasiveness and high spatiotemporal precision. As proof-of-concept, we develop HwTxIV-Nvoc, a UV light-cleavable and photoactivatable peptide that targets voltage-gated sodium (NaV) channels and validate its activity in vitro in HEK293 cells, ex vivo in brain slices and in vivo on mice neuromuscular junctions. We find that HwTxIV-Nvoc enables precise spatiotemporal control of neuronal NaV channel function under all conditions tested. By creating multiple photoactivatable toxins, we demonstrate the broad applicability of this toxin-photoactivation technology.

Funder

Agence Nationale de la Recherche

Fondation Leducq

AFM-Téléthon

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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