Quantum-chemical descriptors for estimating the acute toxicity of electrophiles to the fathead minnow (Pimephales promelas): An analysis based on molecular mechanisms
acute fish toxicity;
electrophiles;
mode of toxic action;
molecular mechanism;
substructural screens;
quantum-chemical descriptors;
D O I:
10.1002/qsar.19960150405
中图分类号:
R914 [药物化学];
学科分类号:
100701 ;
摘要:
Estimating the toxicity of reactive xenobiotics to aquatic organisms requires physicochemical descriptors of passive transport and chemical reactions with nucleophilic biological ligands. Herein, electrophiles whose toxic action is attributed to nucleophilic substitution (S-N). Michael-type addition and Schiff-base formation were examined. Training sets for each molecular mechanism were generated through substructure search applied to chemicals in a fathead minnow (Pimephales promelas) database. Based on a delineation of compounds by a presumed molecular mechanism, relationships between modes of toxic action, potency (96-hour LC(50) values) and mechanistically-appropriate quantum-chemical descriptors were explored. Monohalo-C(sp(3)) function which may give rise to S-N reactivity was encountered in 35 compounds. The inclusion of E(LUMO), a nonspecific electrophilicity descriptor, to the generic LC(50) - hydrophobicity relation increased the explained variance from r(2) = 36% to 69%. Eighteen potential Michael-type accepters, mainly acrylates, were identified by the presence of a localized CC double bond at an alpha, beta position to a polar group. Due to different modes of action. the toxic potency of these chemicals varies almost independently of hydrophobicity (r(2) = 0.12). Two additional electronic descriptors that are consistent with the likely molecular mechanism provide a multivariate QSAR with r(2) = 0.78. Forty-five aldehydes and 3 formamides comprised the training set associated with probable Schiff-base mechanism of toxicity. The results suggest a marginal increase of toxic potency from that expected due to narcosis for more electrophilic carbonyl groups. Overall, it was concluded that regressions based on data sets that combine reactive chemicals with narcotics typically require an electronic descriptor in addition to hydrophobicity, even if the compounds all contain a common electrophilic moiety related to the putative specific reaction mechanism. However, without the generation of additional toxicity data from chemical sets that incorporate a broader range of electronic and steric character, it will likely remain extremely difficult to develop a quantitative ability to predict the potency of electrophilic compounds.
机构:
US Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USA
Univ Missouri, Div Biol Sci, Columbia, MO 65211 USAUS Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USA
Riegerix, Rachelle C.
Tanner, Michael
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US Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USAUS Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USA
Tanner, Michael
Gale, Robert
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US Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USAUS Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USA
Gale, Robert
Tillitt, Donald E.
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US Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USAUS Geol Survey, Columbia Environm Res Ctr, Dept Interior, 4200 New Haven Rd, Columbia, MO 65201 USA