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p53 enhances DNA repair and suppresses cytoplasmic chromatin fragments and inflammation in senescent cells
Karl N. Miller, Brightany Li, Hannah R. Pierce-Hoffman, Shreeya Patel, Xue Lei, Adarsh Rajesh, Marcos G. Teneche, Aaron Havas, Armin Gandhi, Carolina Cano Macip, Jun Lyu, Stella Victorelli, Seung‐Hwa Woo, Anthony B. Lagnado, Michael A. LaPorta
Nature Communications · 2025 · ▲ 28 citations
Genomic instability
Epigenetic alterations
Mitochondrial dysfunction
Cellular senescence
Altered intercellular communication
Chronic inflammation
Mouse
Abstract
Genomic instability and inflammation are distinct telomere(definition) attrition, cellular senescence(definition))." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">hallmarks of aging(definition), but the connection between them is poorly understood. Here we report a mechanism directly linking genomic instability and inflammation in senescent cells through a mitochondria-regulated molecular circuit involving p53 and cytoplasmic chromatin fragments (CCF) that are enriched for DNA damage signaling marker γH2A.X. We show that p53 suppresses CCF accumulation and its downstream inflammatory phenotype. p53 activation suppresses CCF formation linked to enhanced DNA repair and genome integrity. Activation of p53 in aged mice by pharmacological inhibition of MDM2 reverses transcriptomic signatures of aging and age-associated accumulation of monocytes and macrophages in liver. Mitochondrial ablation in senescent cells suppresses CCF formation and activates p53 in an ATM-dependent manner, suggesting that mitochondria-dependent formation of γH2A.X + CCF dampens nuclear DNA damage signaling and p53 activity. These data provide evidence for a mitochondria-regulated p53 signaling circuit in senescent cells that controls DNA repair, genome integrity, and senescence- and age-associated inflammation, with relevance to therapeutic targeting of age-associated disease.
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- DOI
- 10.1038/s41467-025-57229-3
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- 2026-06-02 MST
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APA
Miller, K.N., Li, B., Pierce-Hoffman, H.R., Patel, S., Lei, X., Rajesh, A., Teneche, M.G., Havas, A., Gandhi, A., Macip, C.C., Lyu, J., Victorelli, S., Woo, S., Lagnado, A.B., LaPorta, M.A., Liu, T., Dasgupta, N., Li, S., Davis, A., & Korotkov, A. (2025). p53 enhances DNA repair and suppresses cytoplasmic chromatin fragments and inflammation in senescent cells. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-025-57229-3
Vancouver
Miller KN, Li B, Pierce-Hoffman HR, Patel S, Lei X, Rajesh A, et al. p53 enhances DNA repair and suppresses cytoplasmic chromatin fragments and inflammation in senescent cells. Nature Communications. 2025. doi:10.1038/s41467-025-57229-3.
BibTeX
@article{karl2025penhan,
title = {p53 enhances DNA repair and suppresses cytoplasmic chromatin fragments and inflammation in senescent cells},
author = {Karl N. Miller and Brightany Li and Hannah R. Pierce-Hoffman and Shreeya Patel and Xue Lei and Adarsh Rajesh and Marcos G. Teneche and Aaron Havas and Armin Gandhi and Carolina Cano Macip and Jun Lyu and Stella Victorelli and Seung‐Hwa Woo and Anthony B. Lagnado and Michael A. LaPorta and Tianhui Liu and Nirmalya Dasgupta and Sha Li and Andrew Davis and A. Korotkov and Erik Hultenius and Zichen Gao and Yoav Altman and Rebecca A. Porritt and Guillermina Ávila García},
journal = {Nature Communications},
year = {2025},
doi = {10.1038/s41467-025-57229-3},
}
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