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首页> 外文期刊>Cancer epidemiology, biomarkers and prevention: A publication of the American Association for Cancer Research >Interindividual variability in response to sodium dichromate-induced oxidative DNA damage: role of the Ser326Cys polymorphism in the DNA-repair protein of 8-oxo-7,8-dihydro-2'-deoxyguanosine DNA glycosylase 1.
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Interindividual variability in response to sodium dichromate-induced oxidative DNA damage: role of the Ser326Cys polymorphism in the DNA-repair protein of 8-oxo-7,8-dihydro-2'-deoxyguanosine DNA glycosylase 1.

机译:重铬酸钠诱导的氧化性DNA损伤反应的个体间差异:Ser326Cys多态性在8-oxo-7,8-dihydro-2'-deoxyguanosine DNA糖基化酶1的DNA修复蛋白中的作用。

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摘要

Although the genotoxic mechanism(s) of hexavalent chromium (CrVI) carcinogenicity remain to be fully elucidated, intracellular reduction of CrVI and concomitant generation of reactive intermediates including reactive oxygen species and subsequent oxidative damage to DNA is believed to contribute to the process of carcinogenesis. In the current study, substantial interindividual variation (7.19-25.84% and 8.79-34.72% tail DNA as assessed by conventional and FPG-modified comet assay, respectively) in levels of DNA strand breaks after in vitro treatment of WBC with sodium dichromate (100 micromol/L, 1 hour) was shown within a group of healthy adult volunteers (n = 72) as assessed by both comet and formamidopyrimidine glycosylase-modified comet assays. No statistically significant correlation between glutathione S-transferases M1 or T1, NADPH quinone oxidoreductase 1 (codon 187) and X-ray repair cross complementation factor 1 (codon 194) genotypes and individual levels of DNA damage were observed. However,individuals homozygous for the Cys(326) 8-oxo 7,8-dihydro-2'-deoxyguanosine glycosylase 1 (OGG1) polymorphism had a statistically significant elevation of formamidopyrimidine glycosylase-dependent oxidative DNA damage after treatment with sodium dichromate when compared with either Ser(326)/Ser(326) or Ser(326)/Cys(326) individuals (P = 0.008 and P = 0.003, respectively). In contrast, no effect of OGG1 genotype on background levels of oxidative DNA damage was observed. When individuals were divided on the basis of OGG1 genotype, Cys(326)/Cys(326) individuals had a statistically significant (P < 0.05, one-way ANOVA followed by Tukey test) higher ratio of oxidative DNA damage to plasma antioxidant capacity than either Ser(326)/Ser(326) or Ser(326)/Cys(326) individuals. The results of this study suggest that the Cys(326)/Cys(326) OGG1 genotype may represent a phenotype that is deficient in the repair of 8-oxo-7,8-dihydro-2'-deoxyguanosine, but only under conditions of cellular oxidative stress. We hypothesize that this may be due to oxidation of the Cys(326) residue. In conclusion, the homozygous Cys(326) genotype may represent a biomarker of individual susceptibility of lung cancer risk in individuals that are occupationally exposed to CrVI.
机译:尽管六价铬(CrVI)致癌性的遗传毒性机理仍有待阐明,但人们认为CrVI的细胞内还原作用以及随之而来的反应性中间产物(包括反应性氧物种)的产生以及随后对DNA的氧化破坏都有助于癌变过程。在本研究中,重铬酸钠体外处理WBC后,DNA链断裂的水平存在较大的个体差异(分别由常规和FPG修饰的彗星试验评估的尾巴DNA分别为7.19-25.84%和8.79-34.72%)(100通过彗星和甲酰胺嘧啶糖基化酶糖基化酶修饰的彗星试验评估,一组健康的成年人志愿者(n = 72)中显示出1微摩尔/升(1小时)。谷胱甘肽S-转移酶M1或T1,NADPH醌氧化还原酶1(第187号密码子)和X射线修复交叉互补因子1(第194号密码子)基因型与单个DNA损伤水平之间无统计学意义的相关性。然而,与重铬酸钠处理后,Cys(326)8-oxo 7,8-dihydro-2'-deoxyguanosine糖基化酶1(OGG1)多态性的个体纯合后,甲酰胺基嘧啶糖基化酶依赖性氧化DNA损伤的统计学显着升高Ser(326)/ Ser(326)或Ser(326)/ Cys(326)个体(分别为P = 0.008和P = 0.003)。相反,未观察到OGG1基因型对氧化性DNA损伤的背景水平的影响。当根据OGG1基因型对个体进行划分时,Cys(326)/ Cys(326)个体的氧化DNA损伤与血浆抗氧化能力的比值具有统计学显着性(P <0.05,单向方差分析,然后进行Tukey试验)。 Ser(326)/ Ser(326)或Ser(326)/ Cys(326)个人。这项研究的结果表明,Cys(326)/ Cys(326)OGG1基因型可能代表缺乏修复8-oxo-7,8-dihydro-2'-deoxyguanosine的表型,但仅在以下条件下:细胞氧化应激。我们假设这可能是由于Cys(326)残基的氧化。总之,纯合的Cys(326)基因型可能代表了职业性暴露于CrVI的个体中肺癌风险易感性的生物标记。

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