首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Zebrafish CYP1A expression in transgenic Caenorhabditis elegans protects from exposures to benzo[a]pyrene and a complex polycyclic aromatic hydrocarbon mixture
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Zebrafish CYP1A expression in transgenic Caenorhabditis elegans protects from exposures to benzo[a]pyrene and a complex polycyclic aromatic hydrocarbon mixture

机译:Zebrafish Cyp1a表达在转基因Caenorhabditis elegans中,保护从曝光到苯并[a]芘和复杂的多环芳烃混合物

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摘要

Polycyclic aromatic hydrocarbons (PAHs) are environmental toxicants primarily produced during incomplete combustion; some are carcinogens. PAHs can be safely metabolized or, paradoxically, bioactivated via specific cytochrome P450 (CYP) enzymes to more reactive metabolites, some of which can damage DNA and proteins. Among the CYP isoforms implicated in PAH metabolism, CYP1A enzymes have been reported to both sensitize and protect from PAH toxicity. To clarify the role of CYP1A in PAH toxicity, we generated transgenic Caenorhabditis elegans that express CYP1A at a basal (but not inducible) level. Because this species does not normally express any CYP1 family enzyme, this approach permitted a test of the role of basally expressed CYP1A in PAH toxicity. We exposed C. elegans at different life stages to either the PAH benzo[a]pyrene (BaP) alone, or a real-world mixture dominated by PAHs extracted from the sediment of a highly contaminated site on the Elizabeth River (VA, USA). This site, the former Atlantic Wood Industries, was declared a Superfund site due to coal tar creosote contamination that caused very high levels (in the [mg/mL] range) of high molecular weight PAHs within the sediments. We demonstrate that CYP1A protects against BaP-induced growth delay, reproductive toxicity, and reduction of steady state ATP levels. Lack of sensitivity of a DNA repair (Nucleotide Excision Repair)-deficient strain suggested that CYP1A did not produce significant levels of DNA-reactive metabolites from BaP. The protective effects of CYP1A in Elizabeth River sediment extract (EASE)-exposed nematodes were less pronounced than those seen in BaP-exposed nematodes; CYP1A expression protected against ERSE-induced reduction of steady-state ATP levels, but not other outcomes of exposure to sediment extracts. Overall, we find that in C. elegans, a basal level of CYP1A activity is protective against the examined PAH exposures.
机译:多环芳烃(PAHS)是主要在不完全燃烧期间产生的环境毒物;有些是致癌物。通过特异性细胞色素P450(CYP)酶可以安全地代谢或矛盾的是,通过特异性细胞色素P450(CYP)酶来安全地代谢,其中一些可以损伤DNA和蛋白质。在涉及PAH代谢的CYP同种型中,据报道CYP1A酶从PAH毒性中敏化和保护。为了阐明CYP1A在PAH毒性中的作用,我们生成了在基础(但不是诱导)水平的CYP1A表达CYP1A的转基因caenorhabdiseldist。因为该物种通常不表达任何CYP1家族酶,所以这种方法允许试验基于PAH毒性的基本表达CYP1A的作用。我们在不同的生活阶段暴露于不同的生活阶段C.埃塞俄比[A]芘(Bap),或由伊丽莎白河(VA,USA)的高度受污染部位的沉积物中提取的PAHS中占据的现实世界混合物。前大西洋木制产业本网站被宣布为超级填点,由于煤焦油溶液污染,导致沉积物内的高分子量PAH的高水平(在[Mg / ml]范围内)。我们证明CYP1A可防止BAP诱导的生长延迟,生殖毒性和稳态ATP水平的降低。缺乏DNA修复的敏感性(核苷酸切除修复) - 缺乏菌株表明CYP1A没有产生显着水平的水平来自BAP的DNA反应性代谢物。 Cyp1a在伊丽莎白河沉积物提取物(易于)的耐膨胀线虫的保护作用比在暴露的线虫中看到的那些不太明显; CYP1a表达免受静态ATP水平降低的影响,但不是其他暴露于沉积物提取物的结果。总体而言,我们发现,在C.秀丽隐杆线上,Cyp1a活动的基础水平对所检查的PAH曝光进行保护。

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