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Telomeric 8-oxo-guanine drives rapid premature senescence in the absence of telomere shortening
Ryan Barnes, Mariarosaria De Rosa, Sanjana A. Thosar, Ariana C. Detwiler, Vera Roginskaya, Bennett Van Houten, Marcel P. Bruchez, Jacob Stewart-Ornstein, Patricia L. Opresko
Nature Structural & Molecular Biology · 2022 · ▲ 122 citations
Telomere attrition
Cellular senescence
Altered intercellular communication
Cell culture / in vitro
Human
Abstract
Oxidative stress is a primary cause of cellular senescence(definition) and contributes to the etiology of numerous human diseases. Oxidative damage to telomeric DNA has been proposed to cause premature senescence by accelerating telomere(definition) shortening. Here, we tested this model directly using a precision chemoptogenetic tool to produce the common lesion 8-oxo-guanine (8oxoG) exclusively at telomeres in human fibroblasts and epithelial cells. A single induction of telomeric 8oxoG is sufficient to trigger multiple hallmarks of p53-dependent senescence. Telomeric 8oxoG activates ATM and ATR signaling, and enriches for markers of telomere dysfunction in replicating, but not quiescent cells. Acute 8oxoG production fails to shorten telomeres, but rather generates fragile sites and mitotic DNA synthesis at telomeres, indicative of impaired replication. Based on our results, we propose that oxidative stress promotes rapid senescence by producing oxidative base lesions that drive replication-dependent telomere fragility and dysfunction in the absence of shortening and shelterin loss.
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- 10.1038/s41594-022-00790-y
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- 2026-08-24 MST
Cite this
APA
Barnes, R., Rosa, M.D., Thosar, S.A., Detwiler, A.C., Roginskaya, V., Houten, B.V., Bruchez, M.P., Stewart-Ornstein, J., & Opresko, P.L. (2022). Telomeric 8-oxo-guanine drives rapid premature senescence in the absence of telomere shortening. <em>Nature Structural & Molecular Biology</em>. https://doi.org/10.1038/s41594-022-00790-y
Vancouver
Barnes R, Rosa MD, Thosar SA, Detwiler AC, Roginskaya V, Houten BV, et al. Telomeric 8-oxo-guanine drives rapid premature senescence in the absence of telomere shortening. Nature Structural & Molecular Biology. 2022. doi:10.1038/s41594-022-00790-y.
BibTeX
@article{ryan2022Telome,
title = {Telomeric 8-oxo-guanine drives rapid premature senescence in the absence of telomere shortening},
author = {Ryan Barnes and Mariarosaria De Rosa and Sanjana A. Thosar and Ariana C. Detwiler and Vera Roginskaya and Bennett Van Houten and Marcel P. Bruchez and Jacob Stewart-Ornstein and Patricia L. Opresko},
journal = {Nature Structural & Molecular Biology},
year = {2022},
doi = {10.1038/s41594-022-00790-y},
}
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