Orthorhombic crystals and three-dimensional structure of the potent toxin II from the scorpion Androctonus australis Hector.
- 1 October 1988
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 85 (20) , 7443-7447
- https://doi.org/10.1073/pnas.85.20.7443
Abstract
Orthorhombic crystals (space group P212121, a = 45.94 .ANG., b = 40.68 .ANG., c = 29.93 .ANG.) of the potent scorpion .alpha.-toxin II from Androctonus australis Hector were grown using sterile techniques. The structure was solved by a combination of heavy-atom and model phasing. Subsequently, it was refined at 1.8 .ANG. resolution by a fast-Fourier restrained least-squares procedure. The crystallographic R factor is 0.152 for data with 7.0 .ANG. > d > 1.8 .ANG. and F > 2.5 .sigma. (F) and 0.177 when all data are considered. Eighty-nine solvent molecules have been incorporated into the model. The dense core formed by the .alpha.-helical and antiparallel .beta.-sheet moieties and three of the four disulfide bridges is similar in variant 3, a toxin purified from the North American scorpion Centruroides sculpturatus, and in toxin II. However, the two molecules differ markedly in the orientation of loops protruding from the core. Toxin II seems to contain several highly ordered solvent molecules. Eight of them occupy a cavity consisting of the C-terminal region and a loop found only in scorpion .alpha.-toxins. The highly reactive and pharmacologically important Lys-58 is found at one of the extremes of this cavity, where it establishes a series of hydrogen bonds with protein and solvent atoms. The reactivities of the five lysine residues of toxin II are highly correlated with the formation of hydrogen bonds, hydrophobic interactions, and salt links.This publication has 30 references indexed in Scilit:
- Use of antibodies specific to defined regions of scorpion .alpha.-toxin to study its interaction with its receptor site on the sodium channelBiochemistry, 1986
- Differential effects of defined chemical modifications on antigenic and pharmacological activities of scorpion α and β toxinsEuropean Journal of Biochemistry, 1986
- Structure of variant-3 scorpion neurotoxin from Centruroides sculpturatus ewing, refined at 1·8 Å resolutionJournal of Molecular Biology, 1983
- Photoaffinity labeling of α- and β- scorpion toxin receptors associated with rat brain sodium channelBiochemical and Biophysical Research Communications, 1983
- Covalent structure of the insect toxin of the North African scorpion Androctonus australis HectorInternational Journal of Peptide and Protein Research, 1982
- Binding of scorpion toxins to rat brain synaptosomal fraction. Effects of membrane potential, ions, and other neurotoxinsBiochemistry, 1980
- Mapping of Contact Areas in Protein‐Nucleic Acid and Protein‐Protein Complexes by Differential Chemical ModificationPublished by Wiley ,1979
- Preliminary X-ray diffraction studies on a scorpion neurotoxin: Toxin II of Androctonus australis HectorJournal of Molecular Biology, 1978
- Purification and properties of the insect toxin from the venom of the scorpion Androctonus australis HectorBiochimie, 1971
- Purification of Animal NeurotoxinsEuropean Journal of Biochemistry, 1970