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Covalent interactions of reactive naphthalene metabolites with proteins
1Department of Pharmacology and Toxicology, School of Veterinary Medicine, University of California, Davis.
Abstract:
Naphthalene produces selective necrosis of Clara cells in the mouse but not in the rat. The pulmonary toxicity depends on cytochrome P450-mediated metabolism; however, the selective pulmonary toxicity of naphthalene in the mouse does not correspond to tissue-selective covalent binding of reactive naphthalene metabolites in vivo. These studies compare reactive metabolite binding in target and nontarget cells and in various subcompartments of mouse lung and characterize, by sodium dodecyl sulfate polyacrylamide gel electrophoresis, the proteins to which arylating metabolites are bound. Reactive metabolite binding was substantially higher in incubations of [3H]-naphthalene with distal bronchioles and isolated Clara cells than with explants of trachea or bronchus from the mouse. Likewise, binding was substantially higher in incubations of murine Clara cells than in identical incubations with mouse hepatocytes (nontarget cells) or rat trachea cells (nonsusceptible species). These data show a good correlation between cellular susceptibility to toxicity and the amount of reactive metabolite bound in vitro. Concentrations of adduct were highest in the medium and the nuclear/cell debris fraction (1000 x g pellet) of isolated Clara cells incubated with naphthalene; very small amounts of adduct were noted in pellets isolated at 20,000 or at 100,000 x g (mitochondrial and microsomal fractions) or in cytosol. These observations were consistent with the finding that adduct concentrations in bronchoalveolar lavage were substantially higher than in the lung at low doses of naphthalene and suggest that monitoring adducts in lavage may serve as a useful biomarker of exposure and effect.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Naphthalene causes lung damage in mice by forming reactive metabolites that bind to proteins in Clara cells. This binding correlates with toxicity and may be a useful biomarker for exposure.
Area of Science:
- Toxicology
- Pulmonary Medicine
- Biochemistry
Background:
- Naphthalene induces selective Clara cell necrosis in mice, but not rats.
- Pulmonary toxicity is linked to cytochrome P450 metabolism.
- Selective toxicity doesn't directly correlate with in vivo tissue-selective covalent binding of metabolites.
Purpose of the Study:
- Compare reactive metabolite binding in target vs. nontarget cells.
- Investigate binding in lung subcompartments.
- Characterize proteins bound by arylating metabolites.
Main Methods:
- Incubation of [3H]-naphthalene with mouse lung tissues (distal bronchioles, trachea, bronchus) and isolated cells (Clara cells, hepatocytes).
- Comparison of binding in murine Clara cells versus mouse hepatocytes and rat trachea cells.
- Sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) to identify bound proteins.
Main Results:
- Higher reactive metabolite binding in mouse distal bronchioles and isolated Clara cells compared to trachea/bronchus.
- Significantly greater binding in murine Clara cells than in mouse hepatocytes or rat trachea cells.
- Adduct concentrations were highest in Clara cell medium and nuclear/cell debris fractions.
Conclusions:
- In vitro binding of naphthalene metabolites correlates well with cellular susceptibility to toxicity.
- Adducts in bronchoalveolar lavage fluid may serve as a biomarker for naphthalene exposure and effect.