表观遗传学
DNA甲基化
生物
干细胞
甲基化
造血
动力学(音乐)
遗传学
进化生物学
神经发生的表观遗传调控
计算生物学
后生
细胞分裂
造血干细胞
细胞
进化动力学
成体干细胞
体细胞
电池类型
细胞生物学
表观遗传学
基因表达调控
DNA
作者
Samuel J. C. Crofts,Caleb M. Grenko,Riccardo E. Marioni,Eric Latorre-Crespo,Tamir Chandra
标识
DOI:10.1038/s43587-026-01125-y
摘要
DNA methylation changes are reliable biomarkers of aging, but the driving mechanisms remain poorly understood. Here we present SCARLET (Stem Cells and Age-ReLated Epigenetic Trajectories), a parsimonious mathematical model that describes how methylation changes in blood arise and propagate through hematopoietic stem cell divisions. Using a large human cohort, we demonstrate that seemingly distinct age-related methylation patterns can be explained by a unifying mechanistic model. We show that SCARLET captures known drivers of epigenetic aging, with accelerated individuals showing reduced ratios of stem cell pool size to division rate (N/s). Applying SCARLET to methylation data from 11 mammalian species reveals that N/s scales with maximum lifespan, suggesting that evolutionary adjustments to stem cell dynamics, rather than epigenetic maintenance efficiency, drive the previously observed relationship between methylation rates and lifespan. Our findings provide a quantitative framework for understanding epigenetic aging and suggest that stem cell dynamics may be a key driver of aging across mammals. A parsimonious model of stem cell dynamics describes how DNA methylation changes arise and propagate with age, unifying diverse epigenetic aging patterns and suggesting that stem cell dynamics are a key driver of aging across mammals.
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