Suppr超能文献

在个体年龄相关的CpG位点进行表观遗传编辑会影响全基因组的表观遗传衰老格局。

Epigenetic editing at individual age-associated CpGs affects the genome-wide epigenetic aging landscape.

作者信息

Liesenfelder Sven, Elsafi Mabrouk Mohamed H, Iliescu Jessica, Baranda Monica Varona, Mizi Athanasia, Perez-Correa Juan-Felipe, Wessiepe Martina, Papantonis Argyris, Wagner Wolfgang

机构信息

Institute for Stem Cell Biology, RWTH Aachen University Medical School, Aachen, Germany.

Helmholtz-Institute for Biomedical Engineering, RWTH Aachen University Medical School, Aachen, Germany.

出版信息

Nat Aging. 2025 Mar 24. doi: 10.1038/s43587-025-00841-1.

Abstract

Aging is reflected by genome-wide DNA methylation changes, which form the basis of epigenetic clocks, but it is largely unclear how these epigenetic modifications are regulated and whether they directly affect the aging process. In this study, we performed epigenetic editing at age-associated CpG sites to explore the consequences of interfering with epigenetic clocks. CRISPR-guided editing targeted at individual age-related CpGs evoked genome-wide bystander effects, which were highly reproducible and enriched at other age-associated regions. 4C-sequencing at age-associated sites revealed increased interactions with bystander modifications and other age-related CpGs. Subsequently, we multiplexed epigenetic editing in human T cells and mesenchymal stromal cells at five genomic regions that become either hypermethylated or hypomethylated upon aging. While targeted methylation seemed more stable at age-hypermethylated sites, both approaches induced bystander modifications at CpGs with the highest correlations with chronological age. Notably, these effects were simultaneously observed at CpGs that gain and lose methylation with age. Our results demonstrate that epigenetic editing can extensively modulate the epigenetic aging network and interfere with epigenetic clocks.

摘要

衰老通过全基因组DNA甲基化变化得以体现,这些变化构成了表观遗传时钟的基础,但目前在很大程度上尚不清楚这些表观遗传修饰是如何被调控的,以及它们是否直接影响衰老过程。在本研究中,我们在与年龄相关的CpG位点进行表观遗传编辑,以探究干扰表观遗传时钟的后果。针对单个与年龄相关的CpG的CRISPR引导编辑引发了全基因组旁观者效应,这些效应具有高度可重复性且在其他与年龄相关的区域富集。在与年龄相关的位点进行的4C测序揭示了与旁观者修饰及其他与年龄相关的CpG之间相互作用的增加。随后,我们在人类T细胞和间充质基质细胞的五个在衰老时会发生高甲基化或低甲基化的基因组区域进行多重表观遗传编辑。虽然靶向甲基化在年龄高甲基化位点似乎更稳定,但两种方法均在与实际年龄相关性最高的CpG处诱导了旁观者修饰。值得注意的是,在随年龄增加而发生甲基化增减的CpG处同时观察到了这些效应。我们的结果表明,表观遗传编辑可广泛调节表观遗传衰老网络并干扰表观遗传时钟。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验