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A hyper-quiescent chromatin state formed during aging is reversed by regeneration

bioRxiv, ISSN: 2692-8205
2023
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Article Description

Epigenetic alterations are a key hallmark of aging but have been limitedly explored in tissues. Here, using naturally aged murine liver as a model and extending to other quiescent tissues, we find that aging is driven by temporal chromatin alterations that promote a refractory cellular state and compromise cellular identity. Using an integrated multi-omics approach, and the first direct visualization of aged chromatin we find that globally, old cells show H3K27me3-driven broad heterochromatinization and transcription suppression. At the local level, site-specific loss of H3K27me3 over promoters of genes encoding developmental transcription factors leads to expression of otherwise non-hepatocyte markers. Interestingly, liver regeneration reverses H3K27me3 patterns and rejuvenates multiple molecular and physiological aspects of the aged liver.

Bibliographic Details

Yang, Na; Occean, James R; Melters, Daniël P; Shi, Changyou; Wang, Lin; Stransky, Stephanie; Doyle, Maire E; Cui, Chang-Yi; Delannoy, Michael; Fan, Jinshui; Slama, Eliza; Egan, Josephine M; De, Supriyo; Cunningham, Steven C; de Cabo, Rafael; Sidoli, Simone; Dalal, Yamini; Sen, Payel

Cold Spring Harbor Laboratory

Biochemistry, Genetics and Molecular Biology; Agricultural and Biological Sciences; Immunology and Microbiology; Neuroscience; Pharmacology, Toxicology and Pharmaceutics

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