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A catalytic bioscavenger with improved stability and reduced susceptibility to oxidation for treatment of acute poisoning with neurotoxic organophosphorus compounds.
Job, Laura; Köhler, Anja; Escher, Benjamin; Worek, Franz; Skerra, Arne.
Afiliación
  • Job L; Lehrstuhl für Biologische Chemie, Technische Universität München, Emil-Erlenmeyer-Forum 5, 85354 Freising, Germany. Electronic address: laura.job@tum.de.
  • Köhler A; Lehrstuhl für Biologische Chemie, Technische Universität München, Emil-Erlenmeyer-Forum 5, 85354 Freising, Germany; Bundeswehr Institut für Pharmakologie und Toxikologie, Neuherbergstr. 11, 80937 München, Germany. Electronic address: Anja1Koehler@bundeswehr.org.
  • Escher B; Lehrstuhl für Biologische Chemie, Technische Universität München, Emil-Erlenmeyer-Forum 5, 85354 Freising, Germany. Electronic address: b.escher@tum.de.
  • Worek F; Bundeswehr Institut für Pharmakologie und Toxikologie, Neuherbergstr. 11, 80937 München, Germany. Electronic address: franzworek@bundeswehr.org.
  • Skerra A; Lehrstuhl für Biologische Chemie, Technische Universität München, Emil-Erlenmeyer-Forum 5, 85354 Freising, Germany. Electronic address: skerra@tum.de.
Toxicol Lett ; 321: 138-145, 2020 Mar 15.
Article en En | MEDLINE | ID: mdl-31891759
ABSTRACT
Organophosphorus (OP)1 nerve agents pose a severe toxicological threat, both after dissemination in military conflicts and by terrorists. Hydrolytic enzymes, which may be administered into the blood stream of victims by injection and can decompose the circulating nerve agent into non-toxic metabolites in vivo, could offer a treatment. Indeed, for the phosphotriesterase found in the bacterium Brevundimonas diminuta (BdPTE),2 engineered versions with improved catalytic efficiencies have been described; yet, their biochemical stabilities are insufficient for therapeutic use. Here, we describe the application of rational protein design to develop novel mutants of BdPTE that are less susceptible to oxidative damage. In particular, the replacement of two unpaired cysteine residues by more inert amino acids led to higher stability while maintaining high catalytic activity towards a broad spectrum of substrates, including OP pesticides and V-type nerve agents. The mutant BdPTE enzymes were produced in Escherichia coli, purified to homogeneity, and their biochemical and enzymological properties were assessed. Several candidates both revealed enhanced thermal stability and were less susceptible to oxidative stress, as demonstrated by mass spectrometry. These mutants of BdPTE may show promise for the treatment of acute intoxications by nerve agents as well as OP pesticides.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Compuestos Organofosforados / Proteínas Bacterianas / Caulobacteraceae / Hidrolasas de Triéster Fosfórico / Intoxicación por Organofosfatos / Agentes Nerviosos / Antídotos Idioma: En Año: 2020 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Compuestos Organofosforados / Proteínas Bacterianas / Caulobacteraceae / Hidrolasas de Triéster Fosfórico / Intoxicación por Organofosfatos / Agentes Nerviosos / Antídotos Idioma: En Año: 2020 Tipo del documento: Article