Study of the mechanism of Flavobacterium sp. for hydrolyzing organophosphate pesticides

Fundam Clin Pharmacol. 2003 Dec;17(6):717-23. doi: 10.1046/j.1472-8206.2003.00202.x.

Abstract

The biotransformation by Flavobacterium sp. of the following organophosphate pesticides was experimentally and theoretically studied: phorate, tetrachlorvinphos, methyl-parathion, terbufos, trichloronate, ethoprophos, phosphamidon, fenitrothion, dimethoate and DEF. The Flavobacterium sp. ATCC 27551 strain bearing the organophosphate-degradation gene was used. Bacteria were incubated in the presence of each pesticide for a duration of 7 days. Parent pesticides were identified and quantified by means of a gas-chromatography mass spectrum system. Activity was considered as the amount (micromol) of each pesticide degraded by Flavobacterium sp. Also, structural parameters obtained by means of the CAChe program package for biomolecules, the reactivity index of phosphorus, of oxygen at the P = O function and of sulfur at the P = S function, and lipophilicity (log Poct) (ALOGPS v. 2.0) were obtained for each pesticide. Pesticides were hydrolyzed at the bond between phosphorous and the heteroatom, producing phosphoric acid and three metabolites. Enzymatic activity was significantly explained by the following multiple linear relationship: Enzymatic activity = 162.2 - 9.5(dihedral angle energy) - 25.0(Total energy) - 0.51(Molecular weight). Finally, a mechanism of Flavobacterium sp. to hydrolyze pesticides was proposed.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bacteriological Techniques
  • Biodegradation, Environmental / drug effects
  • Dimethoate / isolation & purification
  • Dimethoate / metabolism
  • Fenitrothion / isolation & purification
  • Fenitrothion / metabolism
  • Flavobacterium / drug effects
  • Flavobacterium / enzymology*
  • Flavobacterium / genetics
  • Gas Chromatography-Mass Spectrometry
  • Genes, Bacterial / drug effects
  • Genes, Bacterial / genetics
  • Genes, Bacterial / physiology
  • Insecticides / isolation & purification
  • Insecticides / metabolism*
  • Methyl Parathion / isolation & purification
  • Methyl Parathion / metabolism
  • Organothiophosphates
  • Organothiophosphorus Compounds / isolation & purification
  • Organothiophosphorus Compounds / metabolism
  • Phorate / isolation & purification
  • Phorate / metabolism
  • Phosphamidon / isolation & purification
  • Phosphamidon / metabolism
  • Phosphoric Acids / chemistry
  • Phosphoric Acids / metabolism
  • Phosphoric Triester Hydrolases / drug effects
  • Phosphoric Triester Hydrolases / genetics
  • Phosphoric Triester Hydrolases / metabolism*
  • Quantitative Structure-Activity Relationship
  • Tetrachlorvinphos / isolation & purification
  • Tetrachlorvinphos / metabolism
  • Time Factors

Substances

  • Insecticides
  • Organothiophosphates
  • Organothiophosphorus Compounds
  • Phosphoric Acids
  • Phosphamidon
  • ethoprop
  • trichloronate
  • Phorate
  • Methyl Parathion
  • Tetrachlorvinphos
  • Phosphoric Triester Hydrolases
  • terbufos
  • Dimethoate
  • Fenitrothion