衰老
表观遗传学
表观基因组
生物
转录因子
增强子
细胞生物学
染色质
转录组
表型
遗传学
基因表达
DNA甲基化
基因
作者
Ricardo Iván Martínez‐Zamudio,Pierre‐François Roux,José Américo Nabuco Leva Ferreira de Freitas,Lucas Robinson,Gregory J. Dore,Bin Sun,Dimitri Belenki,Maja Milanovic,Utz Herbig,Clemens A. Schmitt,Jesús Gil,Oliver Bischof
标识
DOI:10.1038/s41556-020-0529-5
摘要
Senescent cells affect many physiological and pathophysiological processes. While select genetic and epigenetic elements for senescence induction have been identified, the dynamics, epigenetic mechanisms and regulatory networks defining senescence competence, induction and maintenance remain poorly understood, precluding the deliberate therapeutic targeting of senescence for health benefits. Here, we examined the possibility that the epigenetic state of enhancers determines senescent cell fate. We explored this by generating time-resolved transcriptomes and epigenome profiles during oncogenic RAS-induced senescence and validating central findings in different cell biology and disease models of senescence. Through integrative analysis and functional validation, we reveal links between enhancer chromatin, transcription factor recruitment and senescence competence. We demonstrate that activator protein 1 (AP-1) ‘pioneers’ the senescence enhancer landscape and defines the organizational principles of the transcription factor network that drives the transcriptional programme of senescent cells. Together, our findings enabled us to manipulate the senescence phenotype with potential therapeutic implications. Bischof and colleagues report that AP-1 bookmarks prospective senescence enhancers for future activation to achieve a timely execution of the senescence programme.
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