Aging is characterized by a decline in the functionality and number of stem cells across the organism. In this study, we uncovered a mechanism by which systemic inflammation drives muscle stem cell (MuSC) aging through epigenetic erosion. We demonstrate that age-related inflammation decreases monomethylation of H4K20 in MuSCs, disrupting their quiescence and inducing ferroptosis, a form of iron-dependent cell death. Our findings show that inflammatory signals downregulate Kmt5a, the enzyme responsible for depositing H4K20me1, leading to the epigenetic silencing of anti-ferroptosis genes. This results in aberrant iron metabolism, increased reactive oxygen species levels and lipid peroxidation in aged MuSCs. Notably, long-term inhibition of systemic inflammation that is initiated at 12âmonths of age effectively prevents ferroptosis, preserves MuSC numbers and enhances muscle regeneration and functional recovery. These findings reveal an epigenetic switch that links chronic inflammation to MuSC aging and ferroptosis, offering potential therapeutic strategies for combating age-related muscle degeneration.
Epigenetic erosion of H4K20me1 induced by inflammation drives aged stem cell ferroptosis.
炎症引起的 H4K20me1 表观遗传侵蚀驱动衰老干细胞铁死亡
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作者:Blanc Roméo S, Shah Nidhi, Hachmer Sarah, Salama Noah A S, Meng Fanju W, Mousaei Alireza, Puri Gayatri, Hwang Jeonghye Hannah, Wacker Elizabeth E, Yang Benjamin A, Aguilar Carlos A, Chakkalakal Joe V, Onukwufor John O, Murphy Patrick J, Calvi Laura M, Dilworth F Jeffrey, Dirksen Robert T
| 期刊: | Nature Aging | 影响因子: | 19.400 |
| 时间: | 2025 | 起止号: | 2025 Aug;5(8):1491-1509 |
| doi: | 10.1038/s43587-025-00902-5 | 研究方向: | 发育与干细胞、细胞生物学、表观遗传 |
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