LSD1-mediated demethylation of the DNA damage response factor ATM promotes senescence and organ aging

Aging occurs heterogeneously across organs, leading to progressive tissue dysfunction. Cellular senescence is a stress response triggered by age-associated insults, yet the mechanisms regulating senescence and organ aging remain incompletely understood. Here, we defined a role for lysine-specific demethylase 1 (LSD1) in DNA damage–mediated senescence and organ aging. LSD1 was upregulated in aged organs and senescent cells. In response to natural aging or ionizing radiation–induced DNA damage, LSD1 interacted with and demethylated ATM at lysine 3,016, as confirmed using a newly generated ATM-K3016me antibody. This modification sustained ATM phosphorylation, amplified DNA damage signaling, and delayed checkpoint recovery, promoting senescence and organ aging. Inhibition of LSD1 accelerated ATM dephosphorylation via WIP1, enhanced DNA repair, reduced senescence and DNA damage, and prevented irradiation-induced hair graying. Elimination of senescent cells with senolytics reduced LSD1 protein in aged organs, indicating a feedback loop between LSD1 and senescence. Mechanistically, LSD1 underwent autophagosome-lysosome degradation through interaction with LC3 and Beclin1, and autophagy impairment during DNA damage contributed to LSD1 accumulation in senescent cells. This study revealed LSD1 as a key regulator of DNA damage–induced senescence and organ aging and suggested that targeting LSD1 may attenuate senescence, delay organ aging, and prevent hair graying.

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Journal
Journal of Clinical Investigation
Published
2026-09-14
DOI
https://doi.org/10.1172/jci199854
Primary Topic
Telomeres, Telomerase, and Senescence
Type
article
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article

LSD1-mediated demethylation of the DNA damage response factor ATM promotes senescence and organ aging

Xiaoyan Li, Xiaogang Li, Xiaoqin Zhang, Alice Cheng et al.
Journal of Clinical Investigation
Telomeres, Telomerase, and Senescence
article

LSD1-mediated demethylation of the DNA damage response factor ATM promotes senescence and organ aging

Xiaoyan Li, Xiaogang Li, Xiaoqin Zhang, Alice Cheng, Yu Chen, Yingying Zhang
article en

Abstract

Aging occurs heterogeneously across organs, leading to progressive tissue dysfunction. Cellular senescence is a stress response triggered by age-associated insults, yet the mechanisms regulating senescence and organ aging remain incompletely understood. Here, we defined a role for lysine-specific demethylase 1 (LSD1) in DNA damage–mediated senescence and organ aging. LSD1 was upregulated in aged organs and senescent cells. In response to natural aging or ionizing radiation–induced DNA damage, LSD1 interacted with and demethylated ATM at lysine 3,016, as confirmed using a newly generated ATM-K3016me antibody. This modification sustained ATM phosphorylation, amplified DNA damage signaling, and delayed checkpoint recovery, promoting senescence and organ aging. Inhibition of LSD1 accelerated ATM dephosphorylation via WIP1, enhanced DNA repair, reduced senescence and DNA damage, and prevented irradiation-induced hair graying. Elimination of senescent cells with senolytics reduced LSD1 protein in aged organs, indicating a feedback loop between LSD1 and senescence. Mechanistically, LSD1 underwent autophagosome-lysosome degradation through interaction with LC3 and Beclin1, and autophagy impairment during DNA damage contributed to LSD1 accumulation in senescent cells. This study revealed LSD1 as a key regulator of DNA damage–induced senescence and organ aging and suggested that targeting LSD1 may attenuate senescence, delay organ aging, and prevent hair graying.

Journal of Clinical InvestigationVol. 136(18)
Tongji University (CN), Mayo Clinic (US), Tongji Hospital (CN)
Openalex Percentile: Top 11%
Telomeres, Telomerase, and Senescence
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LSD1-mediated demethylation of the DNA damage response factor ATM promotes senescence and organ aging — Xiaoyan Li, Xiaogang Li, et al. · Journal of Clinical Investigation (2026) | TGRS Research Map | TGRS