首页> 外文OA文献 >Cytochronne b(5) and epoxide hydrolase contribute to benzo[a]pyrene-DNA adduct formation catalyzed by cytochrome P450 1A1 under low NADPH:P450 oxidoreductase conditions
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Cytochronne b(5) and epoxide hydrolase contribute to benzo[a]pyrene-DNA adduct formation catalyzed by cytochrome P450 1A1 under low NADPH:P450 oxidoreductase conditions

机译:Cychronchronne b(5)和环氧水解酶有助于在低NADPH:P450氧化还原酶条件下由细胞色素P450 1A1催化的苯并[a] py-DNA加合物形成

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摘要

In previous studies we had administered benzo[a]pyrene (BaP) to genetically engineered mice (HRN) which do not express NADPH:cytochrome P450 oxidoreductase (POR) in hepatocytes and observed higher DNA adduct levels in livers of these mice than in wild-type mice. To elucidate the reason for this unexpected finding we have used two different settings for in vitro incubations; hepatic microsomes from control and BaP-pretreated HRN mice and reconstituted systems with cytochrome P450 1A1 (CYP1A1), POR, cytochrome b5, and epoxide hydrolase (mEH) in different ratios. In microsomes from BaP-pretreated mice, in which Cyp1a1 was induced, higher levels of BaP metabolites were formed, mainly of BaP-7,8-dihydrodiol. At a low POR:CYP1A1 ratio of 0.05:1 in the reconstituted system, the amounts of BaP diones and BaP-9-ol formed were essentially the same as at an equimolar ratio, but formation of BaP-3-ol was ∼1.6-fold higher. Only after addition of mEH were BaP dihydrodiols found. Two BaP-DNA adducts were formed in the presence of mEH, but only one when CYP1A1 and POR were present alone. At a ratio of POR:CYP1A1 of 0.05:1, addition of cytochrome b5 increased CYP1A1-mediated BaP oxidation to most of its metabolites indicating that cytochrome b5 participates in the electron transfer from NADPH to CYP1A1 required for enzyme activity of this CYP. BaP-9-ol was formed even by CYP1A1 reconstituted with cytochrome b5 without POR. Our results suggest that in livers of HRN mice Cyp1a1, cytochrome b5 and mEH can effectively activate BaP to DNA binding species, even in the presence of very low amounts of POR.
机译:在先前的研究中,我们曾对基因工程小鼠(HRN)施用苯并[a] re(BaP),这些小鼠在肝细胞中不表达NADPH:细胞色素P450氧化还原酶(POR),并且观察到这些小鼠肝脏中的DNA加合物水平高于野生动物。型小鼠。为了阐明这一意外发现的原因,我们在体外孵育中使用了两种不同的设置:来自对照组和BaP预处理的HRN小鼠的肝微粒体,以及以不同比例的细胞色素P450 1A1(CYP1A1),POR,细胞色素b5和环氧水解酶(mEH)重建的系统。在BaP预处理小鼠的微粒体中,诱导Cyp1a1,形成较高水平的BaP代谢产物,主要是BaP-7,8-二氢二醇。在重构的系统中,POR:CYP1A1的比率低至0.05:1时,BaP二酮和BaP-9-ol的形成量与等摩尔比时基本相同,但BaP-3-ol的形成量约为1.6-折高。仅在添加mEH之后才发现BaP二氢二醇。在mEH存在下形成了两个BaP-DNA加合物,但是当单独存在CYP1A1和POR时仅形成一个。在POR:CYP1A1的比率为0.05:1的情况下,细胞色素b5的添加会增加CYP1A1介导的BaP对其大部分代谢物的氧化,表明细胞色素b5参与了该CYP酶活性所需的从NADPH到CYP1A1的电子转移。 BaP-9-ol甚至是由无POR的细胞色素b5重构的CYP1A1形成的。我们的结果表明,即使在极少量的POR存在下,在HRN小鼠的肝脏Cyp1a1中,细胞色素b5和mEH也可以有效激活BaP与DNA结合的物种。

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