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从单细胞角度看表观遗传衰老的本质。

Nature of epigenetic aging from a single-cell perspective.

机构信息

Division of Genetics, Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, USA.

Retro Biosciences Inc., Redwood City, CA, USA.

出版信息

Nat Aging. 2024 Jun;4(6):854-870. doi: 10.1038/s43587-024-00616-0. Epub 2024 May 9.

Abstract

Age-related changes in DNA methylation (DNAm) form the basis of the most robust predictors of age-epigenetic clocks-but a clear mechanistic understanding of exactly which aspects of aging are quantified by these clocks is lacking. Here, to clarify the nature of epigenetic aging, we juxtapose the dynamics of tissue and single-cell DNAm in mice. We compare these changes during early development with those observed during adult aging in mice, and corroborate our analyses with a single-cell RNA sequencing analysis within the same multiomics dataset. We show that epigenetic aging involves co-regulated changes as well as a major stochastic component, and this is consistent with transcriptional patterns. We further support the finding of stochastic epigenetic aging by direct tissue and single-cell DNAm analyses and modeling of aging DNAm trajectories with a stochastic process akin to radiocarbon decay. Finally, we describe a single-cell algorithm for the identification of co-regulated and stochastic CpG clusters showing consistent transcriptomic coordination patterns. Together, our analyses increase our understanding of the basis of epigenetic clocks and highlight potential opportunities for targeting aging and evaluating longevity interventions.

摘要

年龄相关的 DNA 甲基化(DNAm)变化是最可靠的年龄表观遗传钟预测因子的基础——但这些钟究竟量化了衰老的哪些方面,其确切的机制理解还很缺乏。在这里,为了阐明表观遗传衰老的本质,我们并列了小鼠组织和单细胞 DNAm 的动态。我们将这些变化与小鼠成年期观察到的变化进行了比较,并在同一个多组学数据集中用单细胞 RNA 测序分析进行了验证。我们表明,表观遗传衰老涉及受调控的变化以及一个主要的随机成分,这与转录模式一致。我们通过直接的组织和单细胞 DNAm 分析以及使用类似于放射性碳衰变的随机过程对衰老 DNAm 轨迹进行建模,进一步支持了随机表观遗传衰老的发现。最后,我们描述了一种单细胞算法,用于识别受调控和随机的 CpG 簇,这些簇显示出一致的转录组协调模式。总之,我们的分析增加了我们对表观遗传钟基础的理解,并强调了靶向衰老和评估长寿干预的潜在机会。

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