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The relationship between DNA adduct formation by benzo[a]pyrene and expression of its activation enzyme cytochrome P450 1A1 in rat

机译:大鼠苯并[a] py的DNA加合物形成及其活化酶细胞色素P450 1A1表达的关系

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摘要

Benzo[a]pyrene (BaP) is a human carcinogen requiring metabolic activation prior to reaction with DNA. Cytochrome P450 (CYP) 1A1 is the most important hepatic and intestinal enzyme in both BaP activation and detoxification. CYP1A2 is also capable of oxidizing BaP, but to a lesser extent. The induction of CYP1A1/2 by BaP and/or β-naphthoflavone in liver and small intestine of rats was investigated. Both BaP and β-naphthoflavone induced CYP1A expression and increased enzyme activities in both organs. Moreover, the induction of CYP1A enzyme activities resulted in an increase in formation of BaP-DNA adducts detected by (32)P-postlabeling in rat liver and in the distal part of small intestine in vivo. The increases in CYP1A enzyme activity were also associated with bioactivation of BaP and elevated BaP-DNA adduct levels in ex vivo incubations of microsomes of both organs with DNA and BaP. These findings indicate a stimulating effect of both compounds on BaP-induced carcinogenesis.
机译:苯并[a] py(BaP)是人类致癌物,在与DNA反应之前需要代谢活化。细胞色素P450(CYP)1A1是BaP活化和排毒中最重要的肝和肠酶。 CYP1A2也能够氧化BaP,但程度较小。研究了BaP和/或β-萘黄酮在大鼠肝脏和小肠中对CYP1A1 / 2的诱导作用。 BaP和β-萘黄酮均可诱导CYP1A表达并增加两个器官中的酶活性。此外,CYP1A酶活性的诱导导致通过(32)P后标记检测到的大鼠肝脏和小肠远端体内BaP-DNA加合物的形成增加。 CYP1A酶活性的增加还与BaP的生物活化和在用DNA和BaP的两个器官的微粒体的体外温育中升高的BaP-DNA加合物水平有关。这些发现表明两种化合物对BaP诱导的致癌作用具有刺激作用。

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