首页> 外文期刊>Mutagenesis >Possible involvement of XPA in repair of oxidative DNA damage deduced from analysis of damage, repair and genotype in a human population study.
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Possible involvement of XPA in repair of oxidative DNA damage deduced from analysis of damage, repair and genotype in a human population study.

机译:XPA可能参与了对氧化性DNA损伤的修复,这是根据一项人群研究中的损伤,修复和基因型分析得出的。

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摘要

Participants in a study of occupational exposure to mineral fibres in Slovakia were analysed for the polymorphism 23A-->G in the DNA repair gene XPA. Of the 388 subjects, 239 were exposed to asbestos, stonewool or glass fibre; the rest were unexposed controls. Levels of DNA base alterations (oxidation and alkylation) in lymphocytes were measured using the comet assay with lesion-specific endonucleases. 8-oxoguanine DNA glycosylase (OGG1) DNA repair activity was measured, as incision activity of a lymphocyte extract on DNA containing the OGG1 substrate 8-oxoguanine. Presence of the A allele was associated with higher levels of DNA damage (sites sensitive to formamidopyrimidine DNA glycosylase, endonuclease III or 3-methyladenine DNA glycosylase II) as well as with higher activity of OGG1 repair enzyme. DNA base damage increased with age, showing highly significant correlations when the whole population or subgroups of the population were analysed. OGG1 repair activity also increased with age, but when analysed according to XPA genotype, the increase was observed only in those individuals with an A allele. Although XPA is known as a protein involved in nucleotide excision repair of UV-induced damage and bulky DNA adducts, it may also have a role in the repair of oxidized bases.
机译:参加一项在斯洛伐克从事矿物纤维职业暴露研究的参与者,分析了DNA修复基因XPA中的23A-> G多态性。在388名受试者中,有239名暴露于石棉,石棉或玻璃纤维中。其余为未暴露的对照。使用彗星测定法和病变特异性核酸内切酶测量淋巴细胞中DNA碱基改变(氧化和烷基化)的水平。测量了8-氧鸟嘌呤DNA糖基化酶(OGG1)的DNA修复活性,如淋巴细胞提取物对含有OGG1底物8-氧鸟嘌呤的DNA的切开活性。 A等位基因的存在与更高水平的DNA损伤(对甲酰胺嘧啶DNA糖基化酶,核酸内切酶III或3-甲基腺嘌呤DNA糖基化酶II敏感的位点)以及OGG1修复酶的更高活性有关。 DNA碱基损伤随年龄增长而增加,当分析整个人群或人群的亚组时,它们显示出高度显着的相关性。 OGG1修复活性也随着年龄增长而增加,但根据XPA基因型分析时,仅在具有A等位基因的个体中观察到了这种增加。尽管XPA被称为参与紫外线诱导的损伤和庞大的DNA加合物的核苷酸切除修复的蛋白质,但它也可能在氧化碱基的修复中起作用。

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