The structure of a novel insecticidal neurotoxin, omega-atracotoxin-HV1, from the venom of an Australian funnel web spider


Autoria(s): Fletcher, Jamie I.; Smith, Ross; O'Donoghue, Séan I.; Nilges, Michael; Connor, Mark; Howden, Merlin E. H.; Christie, Macdonald J.; King, Glenn F.
Data(s)

01/07/1997

Resumo

A family of potent insecticidal toxins has recently been isolated from the venom of Australian funnel web spiders. Among these is the 37-residue peptide omega-atracotoxin-HV1 (omega-ACTX-HV1) from Hadronyche versuta. We have chemically synthesized and folded omega-ACTX-HV1, shown that it is neurotoxic, ascertained its disulphide bonding pattern, and determined its three-dimensional solution structure using NMR spectroscopy. The structure consists of a solvent-accessible beta-hairpin protruding from a disulphide-bonded globular core comprising four beta-turns. The three intramolecular disulphide bonds form a cystine knot motif similar to that seen in several other neurotoxic peptides. Despite limited sequence identity, omega-ACTX-HV1 displays significant structural homology with the omega-agatoxins and omega-conotoxins, both of which are vertebrate calcium channel antagonists; however, in contrast with these toxins, we show that omega-ACTX-HV1 inhibits insect, but not mammalian, voltage-gated calcium channel currents.

Identificador

http://espace.library.uq.edu.au/view/UQ:57760

Idioma(s)

eng

Publicador

Nature Publishing

Palavras-Chave #Biochemistry & Molecular Biology #Biophysics #Cell Biology #Nuclear-magnetic-resonance #3-dimensional Solution Structure #Calcium-channel Antagonist #Omega-conotoxin #Distance Geometry #Coupling-constants #Peripheral Neurons #Protein Structures #H-1-nmr Spectra #Spectroscopy #060112 Structural Biology (incl. Macromolecular Modelling) #111506 Toxicology (incl.Clinical Toxicology)
Tipo

Journal Article