首页> 外文期刊>Archives of Toxicology >The impact of p53 on DNA damage and metabolic activation of the environmental carcinogen benzo[a]pyrene: effects in Trp53(+/ plus ), Trp53(+/-) and Trp53(-/-) mice
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The impact of p53 on DNA damage and metabolic activation of the environmental carcinogen benzo[a]pyrene: effects in Trp53(+/ plus ), Trp53(+/-) and Trp53(-/-) mice

机译:P53对环境致癌物质苯并[A]芘的DNA损伤和代谢活化的影响:TRP53(+ /加),TRP53(+/-)和TRP53( - / - )小鼠中的作用

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摘要

The tumour suppressor p53 is one of the most important cancer genes. Previous findings have shown that p53 expression can influence DNA adduct formation of the environmental carcinogen benzo[a]pyrene (BaP) in human cells, indicating a role for p53 in the cytochrome P450 (CYP) 1A1-mediated biotransformation of BaP in vitro. We investigated the potential role of p53 in xenobiotic metabolism in vivo by treating Trp53(+/+), Trp53(+/-) and Trp53(-/-) mice with BaP. BaP-DNA adduct levels, as measured by P-32-postlabelling analysis, were significantly higher in liver and kidney of Trp53(-/-) mice than of Trp53(+/+) mice. Complementarily, significantly higher amounts of BaP metabolites were also formed ex vivo in hepatic microsomes from BaP-pretreated Trp53(-/-) mice. Bypass of the need for metabolic activation by treating mice with BaP-7,8-dihydrodiol-9,10-epoxide resulted in similar adduct levels in liver and kidney in all mouse lines, confirming that the influence of p53 is on the biotransformation of the parent compound. Higher BaP-DNA adduct levels in the livers of Trp53(-/-) mice correlated with higher CYP1A protein levels and increased CYP1A enzyme activity in these animals. Our study demonstrates a role for p53 in the metabolism of BaP in vivo, confirming previous in vitro results on a novel role for p53 in CYP1A1-mediated BaP metabolism. However, our results also suggest that the mechanisms involved in the altered expression and activity of the CYP1A1 enzyme by p53 in vitro and in vivo are different.
机译:肿瘤抑制器P53是最重要的癌症基因之一。先前的发现表明,P53表达可以影响人细胞中的环境致癌苯并[a]芘(BAP)的DNA加合物形成,表明在体外细胞色素P450(CYP)1A1介导的BAP中P53的作用。我们通过用BAP处理TRP53(+ / +),TRP53(+/-)和TRP53( - / - )小鼠来研究P53在体内癫痫代谢的潜在作用。通过P-32-后标记分析测量的BAP-DNA加合水平在TRP53( - / - )小鼠的肝脏和肾比下显着高于TRP53(+ / +)小鼠。互补的是,在来自Bap-PrepReated TRP53( - / - )小鼠的肝微粒体中也形成了显着较高量的Bap代谢物。通过用BAP-7,8-二氢醇-9,10-环氧化物处理小鼠的小鼠旁路对代谢活化的需求导致所有小鼠肝脏和肾脏中的相似加合水平,证实p53的影响是对生物转化的影响母体化合物。 TRP53( - / - )小鼠肝脏肝脏较高的BAP-DNA加合水平与这些动物中的CYP1A蛋白水平增加和CYP1A酶活性增加。我们的研究证明了P53在体内壳体的新陈代谢中的作用,确认以前在CYP1A1介导的BAP代谢中对P53的新作用进行了实验。然而,我们的结果还表明,在体外和体内CYP1A1酶的改变表达和活性改变和活性的机制是不同的。

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