衰老
乙酰化
细胞衰老
生物
翻译后修饰
医学
计算生物学
细胞生物学
遗传学
生物化学
表型
酶
基因
作者
Mingliang Xu,Wenbin Wang,Saien Lu,M. Xiong,Tong Zhao,Yao Yu,Chunyu Song,Jinjing Yang,Naijin Zhang,Liu Cao,Guozhe Sun,Si‐Chong Chen,Pengbo Wang
标识
DOI:10.3389/fphys.2025.1553646
摘要
Aging is a process in which organisms or cells undergo a decline in their functions. Epigenetic modification changes have been recognized as a senescence hallmark in both natural aging and stimulation-induced senescence. An acetylation modification is a dynamic process, which plays a crucial role in the senescence process through DNA stability, metabolism, and signaling pathways. We summarized the role and regulatory pathways of acetylation modifications in senescence. Various cell fate-determining proteins regulate multiple cellular processes through acetylation modifications. These processes interact and coordinate with each other, forming an integrated regulatory network framework that collectively drives cellular senescence via multiple systemic mechanisms. Based on these findings, we proposed the "acetylation-network regulation-cellular senescence" model, to elaborate how acetylation contributes to senescence. We believe this insight could provide new directions and intervention strategies for senescence and aging-related diseases.
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