Lin Ching Yu, Boland Bridget C, Lee Young Jin, Salemi Michelle R, Morin Dexter, Miller Lisa A, Plopper Charles G, Buckpitt Alan R
Department of Molecular Biosciences, School of Veterinary Medicine, University of California, Davis, CA 95616, USA.
Proteomics. 2006 Feb;6(3):972-82. doi: 10.1002/pmic.200500170.
Naphthalene and 1-nitronaphthalene are ambient air pollutants, which undergo P450-dependent bioactivation in the lung. Reactive metabolites of naphthalene and 1-nitronaphthalene covalently bind to proteins, and the formation of covalent adducts correlates with airway epithelial cell injury in rodent models. These studies were designed to identify protein adducts generated from these reactive metabolites within distal respiratory airways. Distal bronchioles and parenchyma from rhesus monkeys were incubated with [(14)C]naphthalene or [(14)C]1-nitronaphthalene. Proteins were separated by 2-DE, blotted to PVDF membranes, and adducted proteins imaged by storage phosphor analysis. MS of in-gel tryptic digests identified numerous adducted proteins including: eight cytoskeletal proteins, two chaperone proteins, seven metabolic enzymes, one redox protein, two proteins involved in ion balance and cell signaling, and two extracellular proteins. While many proteins are adducted by both naphthalene and 1-nitronaphthalene, some are unique to the individual toxicant and airway subcompartment. Although the role which adduction of these proteins plays in cytotoxicity was not evaluated, these studies provide candidate proteins for future work designed to determine the importance of protein adducts in the mechanisms of toxicity and for developing biomarkers useful in determining the relevance of findings in animal models to exposed human populations.
萘和1-硝基萘是环境空气污染物,它们在肺部通过细胞色素P450依赖的方式进行生物活化。萘和1-硝基萘的活性代谢产物与蛋白质共价结合,在啮齿动物模型中,共价加合物的形成与气道上皮细胞损伤相关。这些研究旨在识别远端呼吸道中由这些活性代谢产物产生的蛋白质加合物。将恒河猴的远端细支气管和实质组织与[¹⁴C]萘或[¹⁴C]1-硝基萘一起孵育。通过双向电泳分离蛋白质,将其印迹到聚偏二氟乙烯膜上,并通过磷屏分析对加合蛋白质进行成像。对胶内胰蛋白酶消化产物进行质谱分析,鉴定出许多加合蛋白质,包括:八种细胞骨架蛋白、两种伴侣蛋白、七种代谢酶、一种氧化还原蛋白、两种参与离子平衡和细胞信号传导的蛋白以及两种细胞外蛋白。虽然许多蛋白质同时被萘和1-硝基萘加合,但有些是个别毒物和气道亚区所特有的。尽管未评估这些蛋白质加合在细胞毒性中所起的作用,但这些研究为未来的工作提供了候选蛋白质,这些工作旨在确定蛋白质加合物在毒性机制中的重要性,并开发有助于确定动物模型中的研究结果与暴露人群相关性的生物标志物。