Functional Significance of the β-Hairpin in the Insecticidal Neurotoxin Ï-Atracotoxin-Hv1a
Ï-Atracotoxin-Hv1a is an insect-specific neurotoxin whose phylogenetic specificity derives from its ability to antagonize insect, but not vertebrate, voltage-gated calcium channels. In order to help understand its mechanism of action and to enhance its utility as a lead compound for insecticide dev...
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Veröffentlicht in: | The Journal of biological chemistry 2001-07, Vol.276 (28), p.26568 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Ï-Atracotoxin-Hv1a is an insect-specific neurotoxin whose phylogenetic specificity derives from its ability to antagonize
insect, but not vertebrate, voltage-gated calcium channels. In order to help understand its mechanism of action and to enhance
its utility as a lead compound for insecticide development, we used a combination of protein engineering and site-directed
mutagenesis to probe the toxin for key functional regions. First, we constructed a Hairpinless mutant in which the C-terminal
β-hairpin, which is highly conserved in this family of neurotoxins, was excised without affecting the fold of the residual
disulfide-rich core of the toxin. The Hairpinless mutant was devoid of insecticidal activity, indicating the functional importance
of the hairpin. We subsequently developed a highly efficient system for production of recombinant toxin and then probed the
hairpin for key functional residues using alanine-scanning mutagenesis followed by a second round of mutagenesis based on
initial âhitsâ from the alanine scan. This revealed that two spatially proximal residues, Asn 27 and Arg 35 , form a contiguous molecular surface that is essential for toxin activity. We propose that this surface of the β-hairpin
is a key site for interaction of the toxin with insect calcium channels. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M102199200 |