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DNA methylation levels at individual age-associated CpG sites can be indicative for life expectancy

机译:各个年龄相关的CpG位点的DNA甲基化水平可指示预期寿命

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摘要

DNA-methylation (DNAm) levels at age-associated CpG sites can be combined into epigenetic aging signatures to estimate donor age. It has been demonstrated that the difference between such epigenetic age-predictions and chronological age is indicative for of all-cause mortality in later life. In this study, we tested alternative epigenetic signatures and followed the hypothesis that even individual age-associated CpG sites might be indicative for life-expectancy. Using a 99-CpG aging model, a five-year higher age-prediction was associated with 11% greater mortality risk in DNAm profiles of the Lothian Birth Cohort 1921 study. However, models based on three CpGs, or even individual CpGs, generally revealed very high offsets in age-predictions if applied to independent microarray datasets. On the other hand, we demonstrate that DNAm levels at several individual age-associated CpGs seem to be associated with life expectancy – e.g., at CpGs associated with the genes PDE4C and CLCN6. Our results support the notion that small aging signatures should rather be analysed by more quantitative methods, such as site-specific pyrosequencing, as the precision of age-predictions is rather low on independent microarray datasets. Nevertheless, the results hold the perspective that simple epigenetic biomarkers, based on few or individual age-associated CpGs, could assist the estimation of biological age.
机译:可以将与年龄相关的CpG位点的DNA甲基化(DNAm)水平结合到表观遗传衰老签名中,以估计供体的年龄。已经证明,这种表观遗传的年龄预测和按时间顺序的年龄之间的差异表明了以后生活中的全因死亡率。在这项研究中,我们测试了替代的表观遗传学特征,并遵循了这样的假设,即即使是与年龄相关的单个CpG位点也可以预期寿命。使用99-CpG衰老模型,Lothian Birth Cohort 1921研究的DNAm资料中,年龄预测高出5年会增加11%的死亡风险。但是,基于三个CpG甚至单个CpG的模型如果应用于独立的微阵列数据集,通常会在年龄预测中显示出很高的偏差。另一方面,我们证明了几种个体年龄相关的CpGs的DNAm水平似乎与预期寿命相关,例如,与基因PDE4C和CLCN6相关的CpGs。我们的结果支持以下观点:较小的衰老特征应该通过更定量的方法(例如位点特异性焦磷酸测序)进行分析,因为在独立的微阵列数据集上,年龄预测的精度相当低。然而,结果认为,基于很少或与年龄相关的CpGs的简单表观遗传标记可以帮助估计生物学年龄。

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