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7H-二苯并[c,g]咔唑及其组织和器官特异性衍生物在中国仓鼠V79细胞系中稳定表达细胞色素P450酶时形成DNA加合物的情况。

DNA adduct formation by 7H-dibenzo[c,g]carbazole and its tissue- and organ-specific derivatives in Chinese hamster V79 cell lines stably expressing cytochrome P450 enzymes.

作者信息

Gábelová Alena, Binková Blanka, Valovicová Zuzana, Srám Radim J

机构信息

Laboratory of Mutagenesis and Carcinogenesis, Cancer Research Institute, Slovak Academy of Sciences, Bratislava, Slovak Republic.

出版信息

Environ Mol Mutagen. 2004;44(5):448-58. doi: 10.1002/em.20073.

Abstract

The cytochrome P4501A subfamily (CYP1A) is involved in the metabolic activation of 7H-dibenzo[c,g]carbazole (DBC) and its tissue- and organ-specific derivatives, N-methyldibenzo[c,g]carbazole (MeDBC)and 5,9-dimethyldibenzo[c,g]carbazole (diMeDBC). In this study, we have evaluated the relationship between the tissue specificity and (32)P-postlabeled adduct patterns produced by these compounds by using a panel of Chinese hamster V79 cell lines stably expressing human CYP1A1 and CYP1A2 and/or N-acetyltransferase. Treatment of the parental cell lines V79MZ and V79NH, which are devoid of any CYP activity, with DBC and its derivatives did not result in detectable adducts. The highest DNA adduct levels were found in CYP1A1-expressing V79MZh1A1 cells after DBC and MeDBC treatment (24.5 +/- 7.2 and 16.2 +/- 3.6 adducts/10(8) nucleotides, respectively). Exposure of this cell line to DBC resulted in five distinct spots, while six spots with different chromatographic mobilities were detected in MeDBC-treated cells. DiMeDBC produced only very low levels of DNA adducts in V79MZh1A1 cells. DBC and MeDBC formed relatively low levels of DNA adducts in CYP1A2-expressing V79MZh1A2 cells (0.7 +/- 0.2 and 2.1 +/- 1.2 adducts/10(8) nucleotides, respectively). DBC formed three weak spots and MeDBC five spots in V79MZh1A2 cells, and all the spots had different chromatographic mobilities. In contrast, diMeDBC did not induce any DNA adducts in these cells, although diMeDBC induced a significant dose-dependent increase in micronucleus frequency under similar treatment conditions (r = 0.76; P < 0.001). The significant increase in DNA damage in the Comet assay following incubation of exposed cells with a repair-specific endonuclease (Fpg protein) suggests that base modifications such as 8-oxodG or Fapy-adducts might be responsible for the genotoxicity of diMeDBC in V79MZh1A2 cells. The similarities between the DNA adduct patterns produced by DBC and MeDBC in V79MZh1A1 and V79MZh1A2 cells suggest that biotransformation mediated via CYP1A1 and CYP1A2 might depend on a PAH-type pathway involving the aromatic ring system.

摘要

细胞色素P4501A亚家族(CYP1A)参与7H-二苯并[c,g]咔唑(DBC)及其组织和器官特异性衍生物N-甲基二苯并[c,g]咔唑(MeDBC)和5,9-二甲基二苯并[c,g]咔唑(二甲基DBC)的代谢活化。在本研究中,我们通过使用一组稳定表达人CYP1A1和CYP1A2和/或N-乙酰转移酶的中国仓鼠V79细胞系,评估了这些化合物产生的组织特异性与(32)P后标记加合物模式之间的关系。用DBC及其衍生物处理缺乏任何CYP活性的亲本细胞系V79MZ和V79NH,未产生可检测到的加合物。在DBC和MeDBC处理后,在表达CYP1A1的V79MZh1A1细胞中发现最高的DNA加合物水平(分别为24.5±7.2和16.2±3.6个加合物/10(8)个核苷酸)。将该细胞系暴露于DBC导致五个不同的斑点,而在MeDBC处理的细胞中检测到六个具有不同色谱迁移率的斑点。二甲基DBC在V79MZh1A1细胞中仅产生非常低水平的DNA加合物。DBC和MeDBC在表达CYP1A2的V79MZh1A2细胞中形成相对较低水平的DNA加合物(分别为0.7±0.2和2.1±1.2个加合物/10(8)个核苷酸)。DBC在V79MZh1A2细胞中形成三个弱点,MeDBC形成五个点,所有斑点具有不同的色谱迁移率。相比之下,二甲基DBC在这些细胞中未诱导任何DNA加合物,尽管在相似的处理条件下二甲基DBC诱导微核频率显著剂量依赖性增加(r = 0.76;P < 0.001)。在用修复特异性内切酶(Fpg蛋白)孵育暴露细胞后,彗星试验中DNA损伤的显著增加表明,诸如8-氧代鸟嘌呤或Fapy-加合物等碱基修饰可能是二甲基DBC在V79MZh1A2细胞中遗传毒性的原因。DBC和MeDBC在V79MZh1A1和V79MZh1A2细胞中产生的DNA加合物模式之间的相似性表明,通过CYP1A1和CYP1A2介导的生物转化可能取决于涉及芳香环系统的多环芳烃型途径。

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