首页> 外文OA文献 >Cytochrome b5 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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Cytochrome b5 and epoxide hydrolase contribute to benzo[a]pyrene-DNA adduct formation catalyzed by cytochrome P450 1A1 under low NADPH:P450 oxidoreductase conditions

机译:在低NADPH:P450氧化还原酶条件下,细胞色素b 5 和环氧水解酶有助于细胞色素P450 1A1催化苯并[a] py-DNA加合物的形成

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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 b, 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 b increased CYP1A1-mediated BaP oxidation to most of its metabolites indicating that cytochrome b 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 b without POR. Our results suggest that in livers of HRN mice Cyp1a1, cytochrome b 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重组的细胞色素P450 1A1(CYP1A1),POR,细胞色素b和环氧化物水解酶(mEH)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b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b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b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b和mEH也可以有效激活BaP与DNA结合的物种。

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