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Halogenated 2,5-pyrrolidinediones: synthesis, bacterial mutagenicity in Ames tester strain TA-100 and semi-empirical molecular orbital calculations
Authors:Beverly A. Freeman   Robert E. Wilson   Ronald G. Binder  William F. Haddon
Abstract:The chloroimide 3,3-dichloro-4-(dichloromethylene)-2,5-pyrrolidinedione, a tetrachloroitaconimide, is the principal mutagen produced by chlorination of simulated poultry chiller water. It is the second most potent mutagenic disinfection by-product of chlorination ever reported. Six of seven new synthetic analogs of this compound are direct-acting mutagens in Ames tester strain TA-100. Computed energies of the lowest unoccupied molecular orbital (ELUMO) and of the radical anion stability (ΔHfrad−ΔHf) from MNDO-PM3 for the chloroimides show a quantitative correlation with the Ames TA-100 bacterial mutagenicity values. The molar mutagenicities of these direct acting mutagenic imides having an exocyclic double bond fit the same linear correlation (ln Mm vs. ELUMO; ln Mm vs. ΔHfrad−ΔHf) as the chlorinated 2(5H)-furanones, including the potent mutagen MX, 3-chloro-4-(dichloro-methyl)-5-hydroxy-2(5H)-furanone, a by-product of water chlorination and paper bleaching with chlorine. Mutagenicity data for related haloimides having endocyclic double bonds are also given. For the same number of chlorine atoms, the imides with endocyclic double bonds have significantly higher Ames mutagenicity compared to their structural analogs with exocyclic double bonds, but do not follow the same ELUMO or ΔHfrad−ΔHf correlation as the exocyclic chloroimides and the chlorinated 2(5H)-furanones.
Keywords:Chlorination   Mutagenicity   Pyrrolidinediones   Chloroimides   MX   Computation   Semi-empirical   LUMO
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