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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genetic polymorphisms and possible gene-gene interactions in metabolic and DNA repair genes: effects on DNA damage.
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Genetic polymorphisms and possible gene-gene interactions in metabolic and DNA repair genes: effects on DNA damage.

机译:代谢和DNA修复基因中的遗传多态性和可能的​​基因-基因相互作用:对DNA损伤的影响。

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We investigated in a central European population, the association between genetic polymorphisms in several genes coding for xenobiotic metabolizing enzymes (CYP1A1, CYP2E1, EPHX1, GSTP1, GSTM1 and GSTT1) and in DNA repair genes (XPD, XPG, XPC and XRCC1) and the levels of single-strand breaks (SSBs) and SSB endonuclease III sensitive sites (endoIII sites) in peripheral blood lymphocytes. No significant differences in the mean levels of SSBs and endoIII sites after stratification for main confounders and occupational exposure were observed in the studied population. Significantly higher levels of SSBs were observed in individuals bearing the wild-type alleles (AA) (0.75+/-0.51SSB/10(9)Da) and heterozygous (AC) genotypes (0.67+/-0.49SSB/10(9)Da) compared to those with homozygous XPD (CC) genotype (0.43+/-0.28SSB/10(9)Da, P=0.033). A moderate increase in the levels of SSBs was also found in individuals with the homozygous XPG exon 15 wild type (GG) and heterozygous (GC) genotypes in comparison to those with the homozygous (CC) genotype (P=0.066) and in individuals with low activity EPHX1 genotype in comparison to those with high activity genotype. Nevertheless, these differences were not statistically significant. No other significant association was found. When gene-gene interactions were evaluated, a combination of EPHX1 activity genotypes with that of either XPD or XPG significantly (P=0.003 and 0.016, respectively) modulated SSB levels resulting in a three-fold difference between the "protective" and the "adverse" genotype-combinations. Almost three-fold differences in SSB levels were found between the "protective" and the "adverse" genotype-combinations of EPHX1 activity genotype and GSTM1 or GSTT1 genotypes, respectively. In conclusion, our results suggest a relation between markers of genotoxicity and polymorphisms in genes coding for xenobiotic metabolizing and DNA repair enzymes as well as a modulating effect of combinations of these polymorphisms.
机译:我们在一个欧洲中部人口中调查了编码异源代谢酶的几种基因(CYP1A1,CYP2E1,EPHX1,GSTP1,GSTM1和GSTT1)与DNA修复基因(XPD,XPG,XPC和XRCC1)之间的遗传多态性之间的关联外周血淋巴细胞中单链断裂(SSB)和SSB核酸内切酶III敏感位点(endoIII位点)的水平。在主要混杂因素分层和职业接触后,在研究人群中,SSB和endoIII位点的平均水平没有显着差异。在携带野生型等位基因(AA)(0.75 +/- 0.51SSB / 10(9)Da)和杂合子(AC)基因型(0.67 +/- 0.49SSB / 10(9))的个体中观察到SSB的水平明显更高Da)与纯合XPD(CC)基因型(0.43 +/- 0.28SSB / 10(9)Da,P = 0.033)相比。与纯合(CC)基因型(P = 0.066)的个体相比,纯合XPG外显子15野生型(GG)和杂合子(GC)基因型的个体中SSB的水平也有适度增加。与具有高活性基因型的人相比,低活性EPHX1基因型的人。但是,这些差异在统计上并不显着。未发现其他重要关联。当评估基因与基因的相互作用时,EPHX1活性基因型与XPD或XPG的显着性基因组合(分别为P = 0.003和0.016)调节了SSB水平,导致“保护性”和“不良性”之间的三倍差异基因型组合。在EPHX1活性基因型和GSTM1或GSTT1基因型的“保护性”和“不良”基因型组合之间,SSB水平几乎有三倍的差异。总之,我们的结果表明遗传毒性标记和多态性在编码异源代谢和DNA修复酶的基因之间的关系,以及这些多态性组合的调节作用。

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