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Synthesis and Characterization of δ-Atracotoxin-Ar1a, the Lethal Neurotoxin from Venom of the Sydney Funnel-Web Spider (Atrax robustus)
- Source :
- Biochemistry. 42:12933-12940
- Publication Year :
- 2003
- Publisher :
- American Chemical Society (ACS), 2003.
-
Abstract
- Delta-atracotoxin-Ar1a (delta-ACTX-Ar1a) is the major polypeptide neurotoxin isolated from the venom of the male Sydney funnel-web spider, Atrax robustus. This neurotoxin targets both insect and mammalian voltage-gated sodium channels, where it competes with scorpion alpha-toxins for neurotoxin receptor site-3 to slow sodium-channel inactivation. Progress in characterizing the structure and mechanism of action of this toxin has been hampered by the limited supply of pure toxin from natural sources. In this paper, we describe the first successful chemical synthesis and oxidative refolding of the four-disulfide bond containing delta-ACTX-Ar1a. This synthesis involved solid-phase Boc chemistry using double coupling, followed by oxidative folding of purified peptide using a buffer of 2 M GdnHCl and glutathione/glutathiol in a 1:1 mixture of 2-propanol (pH 8.5). Successful oxidation and refolding was confirmed using both chemical and pharmacological characterization. Ion spray mass spectrometry was employed to confirm the molecular weight. (1)H NMR analysis showed identical chemical shifts for native and synthetic toxins, indicating that the synthetic toxin adopts the native fold. Pharmacological studies employing whole-cell patch clamp recordings from rat dorsal root ganglion neurons confirmed that synthetic delta-ACTX-Ar1a produced a slowing of the sodium current inactivation and hyperpolarizing shifts in the voltage-dependence of activation and inactivation similar to native toxin. Under current clamp conditions, we show for the first time that delta-ACTX-Ar1a produces spontaneous repetitive plateau potentials underlying the clinical symptoms seen during envenomation. This successful oxidative refolding of synthetic delta-ACTX-Ar1a paves the way for future structure-activity studies to determine the toxin pharmacophore.
- Subjects :
- Peptide Biosynthesis
Male
Biochemistry & Molecular Biology
Atrax
Patch-Clamp Techniques
Stereochemistry
Neurotoxins
Molecular Sequence Data
Drug Resistance
Spider Venoms
Action Potentials
Venom
Peptide
Tetrodotoxin
Biology
medicine.disease_cause
Biochemistry
Chemical synthesis
Sodium Channels
Membrane Potentials
Ganglia, Spinal
medicine
Animals
Neurotoxin
Neurons, Afferent
Amino Acid Sequence
Rats, Wistar
Nuclear Magnetic Resonance, Biomolecular
Cells, Cultured
chemistry.chemical_classification
Scorpion toxin
Toxin
Oxidative folding
Spiders
biology.organism_classification
Rats
chemistry
Sodium Channel Blockers
Subjects
Details
- ISSN :
- 15204995 and 00062960
- Volume :
- 42
- Database :
- OpenAIRE
- Journal :
- Biochemistry
- Accession number :
- edsair.doi.dedup.....9764f9cff2a8741f0d98fe8547f22ede