2025年第52卷第7期目录
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封面故事:细胞衰老是一种由DNA损伤、端粒缩短或致癌信号等内外源应激触发的永久性细胞周
期停滞现象。随着机体衰老,这些细胞在组织中逐渐累积,通过分泌衰老相关分泌表型(SASP)
导致组织微环境紊乱,进而引发器官功能衰退和多种年龄相关疾病。核仁作为调控rRNA生物合成
和核糖体组装的关键核亚结构,其动态的结构变化和蛋白质组成改变已被证明在细胞命运决定中
发挥重要调控作用。本研究揭示,在复制性衰老和应激诱导衰老的细胞模型中,核仁蛋白PES1的
表达水平呈现显著下调,且PES1表达抑制可诱发明显的核仁应激反应,表现为核仁结构碎裂和
rRNA加工异常。进一步机制研究表明,PES1表达抑制通过激活p53-p21信号通路而非Rb通路,诱
导细胞发生衰老。这些发现不仅揭示了核仁应激响应在细胞衰老调控中的新机制,也为开发靶向
核仁功能的抗衰老干预策略提供了重要的理论依据。
(张常建,李玉芳,武凤云,金蕊,牛畅,叶棋浓,程龙. PES1 表达缺陷介导核糖体生成抑制并通过激活
p53 信号诱导细胞衰老, 本期第1853~1865 页)
Cover Story:Objective The nucleolar protein PES1 (Pescadillo homolog 1) plays critical roles in ribosome biogenesis and cell cycle regulation, yet its involvement in cellular senescence remains poorly understood. This study aimed to comprehensively investigate the functional consequences of PES1 suppression in cellular senescence and elucidate the molecular mechanisms underlying its regulatory role.Methods Initially, we assessed PES1 expression patterns in two distinct senescence models: replicative senescent mouse embryonic fibroblasts (MEFs) and doxorubicin-induced senescent human hepatocellular carcinoma HepG2 cells. Subsequently, PES1 expression was specifically downregulated using siRNA-mediated knockdown in these cell lines as well as additional relevant cell types. Cellular proliferation and senescence were assessed by EdU incorporation and SA-β-gal staining assays, respectively. The expression of senescence-associated proteins (p53, p21, and Rb) and SASP factors (IL-6, IL-1β, and IL-8) were analyzed by Western blot or qPCR. Furthermore, Northern blot and immunofluorescence were employed to evaluate pre-rRNA processing and nucleolar morphology.Results PES1 expression was significantly downregulated in senescent MEFs and HepG2 cells. PES1 knockdown resulted in decreased EdU-positive cells and increased SA-β-gal-positive cells, indicating proliferation inhibition and senescence induction. Mechanistically, PES1 suppression activated the p53-p21 pathway without affecting Rb expression, while upregulating IL-6, IL-1β, and IL-8 production. Notably, PES1 depletion impaired pre-rRNA maturation and induced nucleolar stress, as evidenced by aberrant nucleolar morphology.Conclusion Our findings demonstrate that PES1 deficiency triggers nucleolar stress and promotes p53-dependent (but Rb-independent) cellular senescence, highlighting its crucial role in maintaining nucleolar homeostasis and regulating senescence-associated pathways.
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