Alpha-purothionin
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Alpha-purothionin

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Alpha-purothionin is an antimicrobial peptide produced by Triticum aestivum (Wheat). It has antibacterial activity.

Category
Functional Peptides
Catalog number
BAT-013225
Molecular Formula
C198H332N68O56S8
Molecular Weight
4817.72
Synonyms
Alpha-1-purothionin (Plant defensin); THI1.1; Lys-Ser-Cys-Cys-Arg-Ser-Thr-Leu-Gly-Arg-Asn-Cys-Tyr-Asn-Leu-Cys-Arg-Ala-Arg-Gly-Ala-Gln-Lys-Leu-Cys-Ala-Gly-Val-Cys-Arg-Cys-Lys-Ile-Ser-Ser-Gly-Leu-Ser-Cys-Pro-Lys-Gly-Phe-Pro-Lys (Disulfide bridge: Cys3-Cys39, Cys4-Cys31, Cys12-Cys29, Cys16-Cys25)
Appearance
Lyophilized Powder or Liquid
Purity
>85%
Sequence
KSCCRSTLGRNCYNLCRARGAQKLCAGVCRCKISSGLSCPKGFPK (Disulfide bridge: Cys3-Cys39, Cys4-Cys31, Cys12-Cys29, Cys16-Cys25)
Storage
Store at -20°C
2. Interaction between beta-Purothionin and dimyristoylphosphatidylglycerol: a (31)P-NMR and infrared spectroscopic study
Julie-Andrée Richard, Isabelle Kelly, Didier Marion, Michel Pézolet, Michèle Auger Biophys J. 2002 Oct;83(4):2074-83. doi: 10.1016/S0006-3495(02)73968-4.
The interaction of beta-purothionin, a small basic and antimicrobial protein from the endosperm of wheat seeds, with multilamellar vesicles of dimyristoylphosphatidylglycerol (DMPG) was investigated by (31)P solid-state NMR and infrared spectroscopy. NMR was used to study the organization and dynamics of DMPG in the absence and presence of beta-purothionin. The results indicate that beta-purothionin does not induce the formation of nonlamellar phases in DMPG. Two-dimensional exchange spectroscopy shows that beta-purothionin decreases the lateral diffusion of DMPG in the fluid phase. Infrared spectroscopy was used to investigate the perturbations, induced by beta-purothionin, of the polar and nonpolar regions of the phospholipid bilayers. At low concentration of beta-purothionin, the temperature of the gel-to-fluid phase transition of DMPG increases from 24 degrees C to ~33 degrees C, in agreement with the formation of electrostatic interactions between the cationic protein and the anionic phospholipid. At higher protein concentration, the lipid transition is slightly shifted toward lower temperature and a second transition is observed below 20 degrees C, suggesting an insertion of the protein in the hydrophobic core of the lipid bilayer. The results also suggest that the presence of beta-purothionin significantly modifies the lipid packing at the surface of the bilayer to increase the accessibility of water molecules in the interfacial region. Finally, orientation measurements indicate that the alpha-helices and the beta-sheet of beta-purothionin have tilt angles of ~60 degrees and 30 degrees, respectively, relative to the normal of the ATR crystal.
3. The amino-acid sequence of a purothionin from Triticum monococcum, a diploid wheat
B L Jones, A S Mak Eur J Biochem. 1983 Jul 1;133(3):621-5. doi: 10.1111/j.1432-1033.1983.tb07508.x.
Purothionins were extracted and purified from the diploid wheat Triticum monococcum. Two proteins were obtained, one of which was present in only very small amounts. The major purothionin of T. monococcum was sequenced and it had an amino acid sequence identical with that of the beta-purothionin of Triticum aestivum (hexaploid bread wheat). It is known that T. monococcum contains the wheat A genome, so the structural gene coding for the beta-purothionin must comprise a part of the A genome. There have been no observable (as amino acid replacements) changes in the DNA comprising either the beta-purothionin gene of T. aestivum or the purothionin gene of T. monococcum, since T. monococcum (or its wild equivalent, Triticum boeoticum) hybridized with the diploid wheat B genome progenitor and started the evolution from diploid to allohexaploid wheat. All of the investigated characteristics of the purothionin-like protein isolated in small amounts suggested that it was essentially identical in amino acid sequence with the T. monococcum purothionin. It may be a dimerized form of beta-purothionin.
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