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Mitochondria-to-nucleus retrograde signaling drives formation of cytoplasmic chromatin and inflammation in senescence
Maria Grazia Vizioli, Tianhui Liu, Karl N. Miller, Neil Robertson, Kathryn Gilroy, Anthony B. Lagnado, Arantxa Pérez‐García, Christos Kiourtis, Nirmalya Dasgupta, Xue Lei, Patrick Krüger, Colin Nixon, William Clark, Diana Jurk, Thomas G. Bird
Genes & Development · 2020 · ▲ 341 citations
Epigenetic alterations
Mitochondrial dysfunction
Cellular senescence
Altered intercellular communication
Chronic inflammation
Mouse
Abstract
Cellular senescence(definition) is a potent tumor suppressor mechanism but also contributes to aging and aging-related diseases. Senescence is characterized by a stable cell cycle arrest and a complex proinflammatory secretome, termed the senescence-associated secretory phenotype (SASP). We recently discovered that cytoplasmic chromatin fragments (CCFs), extruded from the nucleus of senescent cells, trigger the SASP through activation of the innate immunity cytosolic DNA sensing cGAS-STING pathway. However, the upstream signaling events that instigate CCF formation remain unknown. Here, we show that dysfunctional mitochondria, linked to down-regulation of nuclear-encoded mitochondrial oxidative phosphorylation genes, trigger a ROS-JNK retrograde signaling pathway that drives CCF formation and hence the SASP. JNK links to 53BP1, a nuclear protein that negatively regulates DNA double-strand break (DSB) end resection and CCF formation. Importantly, we show that low-dose HDAC inhibitors restore expression of most nuclear-encoded mitochondrial oxidative phosphorylation genes, improve mitochondrial function, and suppress CCFs and the SASP in senescent cells. In mouse models, HDAC inhibitors also suppress oxidative stress, CCF, inflammation, and tissue damage caused by senescence-inducing irradiation and/or acetaminophen-induced mitochondria dysfunction. Overall, our findings outline an extended mitochondria-to-nucleus retrograde signaling pathway that initiates formation of CCF during senescence and is a potential target for drug-based interventions to inhibit the proaging SASP.
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- DOI
- 10.1101/gad.331272.119
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- 2026-07-17 MST
Cite this
APA
Vizioli, M.G., Liu, T., Miller, K.N., Robertson, N., Gilroy, K., Lagnado, A.B., Pérez‐García, A., Kiourtis, C., Dasgupta, N., Lei, X., Krüger, P., Nixon, C., Clark, W., Jurk, D., Bird, T.G., Passos, J.F., Berger, S.L., Dou, Z., & Adams, P.D. (2020). Mitochondria-to-nucleus retrograde signaling drives formation of cytoplasmic chromatin and inflammation in senescence. <em>Genes & Development</em>. https://doi.org/10.1101/gad.331272.119
Vancouver
Vizioli MG, Liu T, Miller KN, Robertson N, Gilroy K, Lagnado AB, et al. Mitochondria-to-nucleus retrograde signaling drives formation of cytoplasmic chromatin and inflammation in senescence. Genes & Development. 2020. doi:10.1101/gad.331272.119.
BibTeX
@unpublished{maria2020Mitoch,
title = {Mitochondria-to-nucleus retrograde signaling drives formation of cytoplasmic chromatin and inflammation in senescence},
author = {Maria Grazia Vizioli and Tianhui Liu and Karl N. Miller and Neil Robertson and Kathryn Gilroy and Anthony B. Lagnado and Arantxa Pérez‐García and Christos Kiourtis and Nirmalya Dasgupta and Xue Lei and Patrick Krüger and Colin Nixon and William Clark and Diana Jurk and Thomas G. Bird and João F. Passos and Shelley L. Berger and Zhixun Dou and Peter D. Adams},
journal = {Genes & Development},
year = {2020},
doi = {10.1101/gad.331272.119},
}
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