表观遗传学
生物
重编程
DNA甲基化
遗传学
后生
后转座子
基因组
计算生物学
基因
转座因子
基因表达
作者
Lishomwa C. Ndhlovu,Matthew L. Bendall,Varun B. Dwaraka,Alina P.S. Pang,Nicholas Dopkins,Natàlia Carreras-Gallo,Ryan Smith,Douglas F. Nixon,Michael J. Corley
摘要
Abstract Reactivation of retroelements in the human genome has been linked to aging. However, whether the epigenetic state of specific retroelements can predict chronological age remains unknown. We provide evidence that locus‐specific retroelement DNA methylation can be used to create retroelement‐based epigenetic clocks that accurately measure chronological age in the immune system, across human tissues, and pan‐mammalian species. We also developed a highly accurate retroelement epigenetic clock compatible with EPICv.2.0 data that was constructed from CpGs that did not overlap with existing first‐ and second‐generation epigenetic clocks, suggesting a unique signal for epigenetic clocks not previously captured. We found retroelement‐based epigenetic clocks were reversed during transient epigenetic reprogramming, accelerated in people living with HIV‐1, and responsive to antiretroviral therapy. Our findings highlight the utility of retroelement‐based biomarkers of aging and support a renewed emphasis on the role of retroelements in geroscience.
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