Effect of Methionine Oxidation and Substitution of α-Conotoxin TxID on α3β4 Nicotinic Acetylcholine Receptor

Mar Drugs. 2018 Jun 20;16(6):215. doi: 10.3390/md16060215.

Abstract

α-Conotoxin TxID was discovered from Conus textile by gene cloning, which has 4/6 inter-cysteine loop spacing and selectively inhibits α3β4 nicotinic acetylcholine receptor (nAChR) subtype. However, TxID is susceptible to modification due to it containing a methionine (Met) residue that easily forms methionine sulfoxide (MetO) in oxidative environment. In this study, we investigated how Met-11 and its derivatives affect the activity of TxID using a combination of electrophysiological recordings and molecular modelling. The results showed most TxID analogues had substantially decreased activities on α3β4 nAChR with more than 10-fold potency loss and 5 of them demonstrated no inhibition on α3β4 nAChR. However, one mutant, [M11I]TxID, displayed potent inhibition at α3β4 nAChR with an IC50 of 69 nM, which only exhibited 3.8-fold less compared with TxID. Molecular dynamics simulations were performed to expound the decrease in the affinity for α3β4 nAChR. The results indicate replacement of Met with a hydrophobic moderate-sized Ile in TxID is an alternative strategy to reduce the impact of Met oxidation, which may help to redesign conotoxins containing methionine residue.

Keywords: methionine oxidation and substitution; molecular dynamics simulations; peptide synthesis and activity assay; α-Conotoxin TxID; α3β4 nAChR.

MeSH terms

  • Amino Acid Sequence / genetics
  • Animals
  • Aquatic Organisms / genetics
  • Aquatic Organisms / metabolism*
  • Conotoxins / chemistry*
  • Conotoxins / genetics
  • Conotoxins / pharmacology
  • Conus Snail / genetics
  • Conus Snail / metabolism*
  • Inhibitory Concentration 50
  • Methionine / analogs & derivatives
  • Methionine / chemistry
  • Molecular Conformation
  • Molecular Dynamics Simulation
  • Mutation
  • Nicotinic Antagonists / chemistry*
  • Nicotinic Antagonists / pharmacology
  • Oocytes
  • Patch-Clamp Techniques
  • Receptors, Nicotinic / metabolism*
  • Structure-Activity Relationship
  • Xenopus laevis

Substances

  • Conotoxins
  • Nicotinic Antagonists
  • Receptors, Nicotinic
  • nicotinic receptor alpha3beta4
  • Methionine
  • methionine sulfoxide