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The Association of LINE-1 Hypomethylation with Age and Centromere Positive Micronuclei in Human Lymphocytes

机译:LINE-1低甲基化与年龄和人淋巴细胞中着丝粒阳性微核的关系

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摘要

Global hypomethylation in white blood cell (WBC) DNA has recently been proposed as a potential biomarker for determining cancer risk through genomic instability. However, the amplitude of the changes associated with age and the impacts of environmental factors on DNA methylation are unclear. In this study, we investigated the association of genomic hypomethylation with age, cigarette use, drinking status and the presence of centromere positive micronuclei (MNC+)—a biomarker for age-dependent genomic instability. Genomic hypomethylation of the repetitive element LINE-1 was measured in WBC DNA from 32 healthy male volunteers using the pyrosequencing assay. We also measured MNC+ with the micronucleus-centromere assay using a pan-centromeric probe. Possibly due to the small sample size and resulting low statistical power, smoking and drinking status had no significant effect on LINE-1 hypomethylation or the occurrence of MNC+. Consequently, we did not include them in further analyses. In contrast, LINE-1 hypomethylation and age significantly predicted MNC+; therefore, we examined whether LINE-1 hypomethylation plays a role in MNC+ formation by age, since genomic hypomethylation is associated with genomic instability. However, LINE-1 hypomethylation did not significantly mediate the effect of age on MNC+. Our data indicate that the repetitive element LINE-1 is demethylated with age and increasing MNC+ frequency, but additional studies are needed to fully understand the relation between genomic DNA hypomethylation, age and genomic instability.
机译:最近,白细胞(WBC)DNA中的全局低甲基化被提出作为通过基因组不稳定性确定癌症风险的潜在生物标记。但是,与年龄有关的变化幅度以及环境因素对DNA甲基化的影响尚不清楚。在这项研究中,我们调查了基因组低甲基化与年龄,吸烟,饮酒状况和着丝粒阳性微核(MNC +)的相关性-年龄依赖性基因组不稳定的生物标记。使用焦磷酸测序法在32位健康男性志愿者的WBC DNA中测量了重复元件LINE-1的基因组低甲基化。我们还使用泛着丝粒探针通过微核着丝粒测定法测量了MNC +。可能由于样本量小且导致的统计功效低,吸烟和饮酒状况对LINE-1低甲基化或MNC +的发生没有显着影响。因此,我们没有将它们包括在进一步的分析中。相反,LINE-1的甲基化不足和年龄明显预测MNC +。因此,我们检查了LINE-1的低甲基化是否随着年龄的增长而在MNC +的形成中起作用,因为基因组的低甲基化与基因组的不稳定性有关。但是,LINE-1的低甲基化作用并未明显介导年龄对MNC +的影响。我们的数据表明,重复元件LINE-1随着年龄的增长和MNC +频率的增加而去甲基化,但是还需要进行其他研究才能充分了解基因组DNA甲基化不足,年龄和基因组不稳定性之间的关系。

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