表观遗传学
干细胞
端粒
生物
细胞老化
细胞生物学
后生
遗传学
DNA甲基化
基因
基因表达
作者
Daojun Diao,Hu Wang,Tangliang Li,Zhencan Shi,Xisen Jin,Tobias Sperka,Xudong Zhu,Meimei Zhang,Fan Yang,Yu‐Sheng Cong,Li Shen,Qimin Zhan,Jing Yan,Zhangfa Song,Zhenyu Ju
标识
DOI:10.15252/embr.201745494
摘要
Progressive attrition of telomeres triggers DNA damage response (DDR) and limits the regenerative capacity of adult stem cells during mammalian aging. Intriguingly, telomere integrity is not only determined by telomere length but also by the epigenetic status of telomeric/sub-telomeric regions. However, the functional interplay between DDR induced by telomere shortening and epigenetic modifications in aging remains unclear. Here, we show that deletion of Gadd45a improves the maintenance and function of intestinal stem cells (ISCs) and prolongs lifespan of telomerase-deficient mice (G3Terc-/-). Mechanistically, Gadd45a facilitates the generation of a permissive chromatin state for DDR signaling by inducing base excision repair-dependent demethylation of CpG islands specifically at sub-telomeric regions of short telomeres. Deletion of Gadd45a promotes chromatin compaction in sub-telomeric regions and attenuates DDR initiation at short telomeres of G3Terc-/- ISCs. Treatment with a small molecule inhibitor of base excision repair reduces DDR and improves the maintenance and function of G3Terc-/- ISCs. Taken together, our study proposes a therapeutic approach to enhance stem cell function and prolong lifespan by targeting epigenetic modifiers.
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