作者
Tina Wang, Brian Tsui, Jason F Kreisberg, Neil A Robertson, Andrew M Gross, Michael Ku Yu, Hannah Carter, Holly M Brown-Borg, Peter D Adams, Trey Ideker
发表日期
2017/12
期刊
Genome biology
卷号
18
页码范围
1-11
出版商
BioMed Central
简介
Background
Global but predictable changes impact the DNA methylome as we age, acting as a type of molecular clock. This clock can be hastened by conditions that decrease lifespan, raising the question of whether it can also be slowed, for example, by conditions that increase lifespan. Mice are particularly appealing organisms for studies of mammalian aging; however, epigenetic clocks have thus far been formulated only in humans.
Results
We first examined whether mice and humans experience similar patterns of change in the methylome with age. We found moderate conservation of CpG sites for which methylation is altered with age, with both species showing an increase in methylome disorder during aging. Based on this analysis, we formulated an epigenetic-aging model in mice using the liver methylomes of 107 mice from 0.2 to 26.0 months …
引用总数
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