Single Amino Acid Substitutions in Kappa-conotoxin PVIIA Disrupt Interaction with the Shaker K+ Channel
Overview
Affiliations
kappa-Conotoxin PVIIA (kappa-PVIIA), a 27-amino acid peptide with three disulfide cross-links, isolated from the venom of Conus purpurascens, is the first conopeptide shown to inhibit the Shaker K(+) channel (Terlau, H., Shon, K., Grilley, M., Stocker, M., Stühmer, W., and Olivera, B. M. (1996) Nature 381, 148-151). Recently, two groups independently determined the solution structure for kappa-PVIIA using NMR; although the structures reported were similar, two mutually exclusive models for the interaction of the peptide with the Shaker channel were proposed. We carried out a structure/function analysis of kappa-PVIIA, with alanine substitutions for all amino acids postulated to be key residues by both groups. Our data are consistent with the critical dyad model developed by Ménez and co-workers (Dauplais, M., Lecoq, A., Song, J. , Cotton, J., Jamin, N., Gilquin, B., Roumestand, C., Vita, C., de Medeiros, C., Rowan, E. G., Harvey, A. L., and Ménez, A. (1997) J. Biol. Chem. 272, 4802-4809) for polypeptide antagonists of K(+) channels. In the case of kappa-PVIIA, Lys(7) and Phe(9) are essential for activity as predicted by Savarin et al. (Savarin, P., Guenneugues, M., Gilquin, B., Lamthanh, H., Gasparini, S., Zinn-Justin, S., and Ménez, A. (1998) Biochemistry 37, 5407-5416); these workers also correctly predicted an important role for Lys(25). Thus, although kappa-conotoxin PVIIA has no obvious sequence homology to polypeptide toxins from other venomous animals that interact with voltage-gated K(+) channels, there may be convergent functional features in diverse K(+) channel polypeptide antagonists.
Peptide Toxins from Marine Snails with Activity on Potassium Channels and/or Currents.
Martinez-Hernandez L, Lopez-Vera E, Aguilar M Toxins (Basel). 2024; 16(12.
PMID: 39728762 PMC: 11728717. DOI: 10.3390/toxins16120504.
Turcio R, Di Matteo F, Capolupo I, Ciaglia T, Musella S, Di Chio C Mar Drugs. 2024; 22(8).
PMID: 39195466 PMC: 11355921. DOI: 10.3390/md22080350.
Structural and Functional Analyses of Cone Snail Toxins.
Duque H, Dias S, Franco O Mar Drugs. 2019; 17(6).
PMID: 31234371 PMC: 6628382. DOI: 10.3390/md17060370.
Efficient enzymatic cyclization of an inhibitory cystine knot-containing peptide.
Kwon S, Bosmans F, Kaas Q, Cheneval O, Conibear A, Rosengren K Biotechnol Bioeng. 2016; 113(10):2202-12.
PMID: 27093300 PMC: 5526200. DOI: 10.1002/bit.25993.
Imperial J, Cabang A, Song J, Raghuraman S, Gajewiak J, Watkins M Toxicon. 2014; 89:45-54.
PMID: 24997406 PMC: 4134995. DOI: 10.1016/j.toxicon.2014.06.014.