应力颗粒
衰老
颗粒(地质)
自噬
氧化应激
细胞应激反应
长寿
老化
细胞生物学
内分泌学
生物
战斗或逃跑反应
细胞凋亡
遗传学
古生物学
基因
信使核糖核酸
翻译(生物学)
作者
Ting Dong,Nianyu Li,Huirui Wang,Hui Zhu,Yinghui Gao,Yue Liu,Fang Fang,Xiaojie Fu,Pinxin Si,Li Cheng,Mei Li,Fei Wang,Shidou Zhao,Ting Guo,Linlin Cui,Xinyi Jiang,Xiaohui Liu,Han Zhao,Yingying Qin,Zi‐Jiang Chen
出处
期刊:Nature Aging
日期:2025-07-31
卷期号:5 (8): 1548-1567
被引量:8
标识
DOI:10.1038/s43587-025-00927-w
摘要
Reproductive longevity is essential for female fertility and healthy aging; however, the role of stress response, especially stress granule accumulation, in ovarian aging remains elusive and interventions are lacking. Here, we identified deleterious mutations and decreased expression of NCOA7, a stress-response protein related to granulosa cell senescence in women with physiological and pathological ovarian aging. NCOA7 deletion accelerates oxidative stress-related cellular senescence, ovarian aging and fecundity decline in mice. Mechanistically, NCOA7 partitions into the stress granule containing G3BP1-V-ATPase and facilitates autophagic degradation of stress granules to relieve stress. Boosting granulophagy with rapamycin or lipid nanoparticle-based mRNA delivery of NCOA7 accelerates stress granule clearance, alleviating cellular senescence in human granulosa cells and delaying ovarian aging in mice. This study depicts a mechanism for ovarian resilience to stress and provides potential targets for therapeutic strategies to alleviate ovarian aging.
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