Somatic mutation as an explanation for epigenetic aging.

IF 17 Q1 CELL BIOLOGY Nature aging Pub Date : 2025-01-13 DOI:10.1038/s43587-024-00794-x
Zane Koch, Adam Li, Daniel S Evans, Steven Cummings, Trey Ideker
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Abstract

DNA methylation marks have recently been used to build models known as epigenetic clocks, which predict calendar age. As methylation of cytosine promotes C-to-T mutations, we hypothesized that the methylation changes observed with age should reflect the accrual of somatic mutations, and the two should yield analogous aging estimates. In an analysis of multimodal data from 9,331 human individuals, we found that CpG mutations indeed coincide with changes in methylation, not only at the mutated site but with pervasive remodeling of the methylome out to ±10 kilobases. This one-to-many mapping allows mutation-based predictions of age that agree with epigenetic clocks, including which individuals are aging more rapidly or slowly than expected. Moreover, genomic loci where mutations accumulate with age also tend to have methylation patterns that are especially predictive of age. These results suggest a close coupling between the accumulation of sporadic somatic mutations and the widespread changes in methylation observed over the course of life.

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体细胞突变是表观遗传衰老的一种解释。
DNA甲基化标记最近被用来建立被称为表观遗传时钟的模型,它可以预测日历年龄。由于胞嘧啶的甲基化促进了C-to-T突变,我们假设随着年龄的增长所观察到的甲基化变化应该反映了体细胞突变的累积,这两者应该产生类似的衰老估计。在对9,331个人类个体的多模态数据的分析中,我们发现CpG突变确实与甲基化的变化相一致,不仅在突变位点,而且在甲基组的普遍重构中达到±10千碱基。这种一对多的映射使得基于突变的年龄预测与表观遗传时钟一致,包括哪些个体比预期衰老得更快或更慢。此外,突变随年龄增长而积累的基因组位点也倾向于具有特别预测年龄的甲基化模式。这些结果表明,散发性体细胞突变的积累与在生命过程中观察到的甲基化的广泛变化之间存在密切的耦合。
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