Synergistic and antagonistic interactions between tetrodotoxin and mu-conotoxin in blocking voltage-gated sodium channels

Channels (Austin). 2009 Jan-Feb;3(1):32-8. doi: 10.4161/chan.3.1.7500. Epub 2009 Jan 25.

Abstract

Tetrodotoxin (TTX) is the quintessential ligand of voltage-gated sodium channels (NaVs). Like TTX, mu-conotoxin peptides are pore blockers, and both toxins have helped to define the properties of neurotoxin receptor Site 1 of NaVs. Here, we report unexpected results showing that the recently discovered mu-conotoxin KIIIA and TTX can simultaneously bind to Site 1 and act in concert. Results with saturating concentrations of peptide applied to voltage-clamped Xenopus oocytes expressing brain NaV1.2, and single-channel recordings from brain channels in lipid bilayers, show that KIIIA or its analog, KIIIA[K7A], block partially, with a residual current that can be completely blocked by TTX. In addition, the kinetics of block by TTX and peptide are each affected by the prior presence of the other toxin. For example, bound peptide slows subsequent binding of TTX (an antagonistic interaction) and slows TTX dissociation when both toxins are bound (a synergistic effect on block). The overall functional consequence resulting from the combined action of the toxins depends on the quantitative balance between these opposing actions. The results lead us to postulate that in the bi-liganded NaV complex, TTX is bound between the peptide and the selectivity filter. These observations refine our view of Site 1 and open new possibilities in NaV pharmacology.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Binding Sites
  • Conotoxins / metabolism
  • Conotoxins / pharmacology*
  • Kinetics
  • Ligands
  • Membrane Potentials
  • Mutation
  • NAV1.2 Voltage-Gated Sodium Channel
  • Nerve Tissue Proteins / drug effects*
  • Nerve Tissue Proteins / genetics
  • Nerve Tissue Proteins / metabolism
  • Oocytes
  • Rats
  • Sodium / metabolism*
  • Sodium Channel Blockers / metabolism
  • Sodium Channel Blockers / pharmacology*
  • Sodium Channels / drug effects*
  • Sodium Channels / genetics
  • Sodium Channels / metabolism
  • Tetrodotoxin / metabolism
  • Tetrodotoxin / pharmacology*
  • Xenopus

Substances

  • Conotoxins
  • Ligands
  • NAV1.2 Voltage-Gated Sodium Channel
  • Nerve Tissue Proteins
  • Scn2A protein, rat
  • Sodium Channel Blockers
  • Sodium Channels
  • Tetrodotoxin
  • Sodium