McIntosh et al. Conus peptides as probes for Ion channels. 1999. Methods in Enzymology 294: 605-624.* |
Cruz, L.J. et al. (1985). “Conus geographics Toxins That Discriminate Between Neuronal and Muscle Sodium Channels,” J. Biol. Chem. 260(16), Aug. 5, pp. 9280-9288. |
Fainzilber, M. et al. (1995). “A New Cysteine Framework in Sodium Channel Blocking Conotoxins,” Biochemistry 34:8649-8656. |
Shon, K-J. et al. (1998). “μ-Conotoxin PIIIA, a New Peptide for Discriminating Among Tetrodotoxin-Sensitive Na Channel Subtypes,” J. Neurosci. 18(12), Jun. 15, 1998:4473-4481. |
Jones, R.M. et al. (2000). “Conus peptides—Combinatorial Chemistry at a Cone Snail's Pace,” Current Opn. Drug Discov& Devel. 3(2):141-154. |
Nakamura, M. et al. (2001). “Modification of Arg-13 of μ-Conotoxin GIIIA with Piperidinyl-Arg Analogs and Their Relation to the Inhibition of Sodium Channels,” FEBS Letters. 503:107-110. |
West, P.J. et al. (2002). “μu-Conotoxin SmIIA, a Potent Inhibitor of Tetrodotoxin-Resistant Sodium Channels in Amphibian Sympathetic and Sensory Neurons,” Biochem. 41:15388-15393. |
Waxman, S.G. et al. (2000). “Voltage-gated sodium channels and the molecular pathogenesis of pain: A review,” J. Rehabil. Res. Devel. 37(5):517-528. |
Wakamatsu, K. et al. (1992). “Structure-Activity Relationships of μ-Conotoxin GIIIA: Structure Determination of Active and Inactive Sodium Channel Blocker Peptides by NMR and Simulated Annealing Calculations,” Biochemistry 31:12577-12584. |
Olivera, B.M. et al. (1990). “Diversity of Conus Neuropeptides,” Science 249:257-263. |
Cruz, L.J. et al. (1989). “μ-Conotoxin GIIIA, aPeptide Ligand for Muscle Sodium Channels: Chemical Synthesis, Radiolabeling, and Receptor Characterization,” Biochemistry 28: 3437-3442. |
Olivera, B.M. et al. (1985). “Peptide Neurotoxins from Fish-Hunting Cone Snails,” Science 230:1338-1343. |