作者
Spencer A Haws, Deyang Yu, Cunqi Ye, Coral K Wille, Long C Nguyen, Kimberly A Krautkramer, Jay L Tomasiewicz, Shany E Yang, Blake R Miller, Wallace H Liu, Kazuhiko Igarashi, Rupa Sridharan, Benjamin P Tu, Vincent L Cryns, Dudley W Lamming, John M Denu
发表日期
2020/4/16
期刊
Molecular cell
卷号
78
期号
2
页码范围
210-223. e8
出版商
Cell Press
简介
S-adenosylmethionine (SAM) is the methyl-donor substrate for DNA and histone methyltransferases that regulate epigenetic states and subsequent gene expression. This metabolism-epigenome link sensitizes chromatin methylation to altered SAM abundance, yet the mechanisms that allow organisms to adapt and protect epigenetic information during life-experienced fluctuations in SAM availability are unknown. We identified a robust response to SAM depletion that is highlighted by preferential cytoplasmic and nuclear mono-methylation of H3 Lys 9 (H3K9) at the expense of broad losses in histone di- and tri-methylation. Under SAM-depleted conditions, H3K9 mono-methylation preserves heterochromatin stability and supports global epigenetic persistence upon metabolic recovery. This unique chromatin response was robust across the mouse lifespan and correlated with improved metabolic health, supporting a …
引用总数
2020202120222023202471411148