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Inactivation of a Serotonin-Gated Ion Channel by a Polypeptide Toxin from Marine Snails

SciencePublished 24 July 1998
Laura England, Julita S. Imperial, Richard B. Jacobsen, A. Grey Craig, Joseph Gulyas, Mateen Akhtar
Citations119
SJR quartileQ1
SJR score10.42
SNIP6.62

TL;DR

Final sigma-Conotoxin inactivates the 5-HT3 receptor through competitive antagonism and is a highly selective inhibitor of this receptor, meaning serotonin receptors can now be included among the molecular targets of natural polypeptide neurotoxins.

Abstract

The venom of predatory marine snails is a rich source of natural products that act on specific receptors and ion channels within the mammalian nervous system. A 41-amino acid peptide, final sigma-conotoxin GVIIIA, was purified on the basis of its ability to inactivate the 5-HT3 receptor, an excitatory serotonin-gated ion channel. final sigma-Conotoxin contains a brominated tryptophan residue, which may be important for peptide activity because the endogenous ligand for the 5-HT3 receptor is a hydroxylated derivative of tryptophan. final sigma-Conotoxin inactivates the 5-HT3 receptor through competitive antagonism and is a highly selective inhibitor of this receptor. Serotonin receptors can now be included among the molecular targets of natural polypeptide neurotoxins.

Keywords

Biochemistry, Genetics and Molecular BiologyEnvironmental Science