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NIP7促进泛素缀合酶E2 C表达介导甲状腺未分化癌细胞增殖及肿瘤生长
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作者 龚荧荧 方籽雯 +2 位作者 王艺璇 葛明华 潘宗富 《浙江大学学报(医学版)》 北大核心 2025年第3期372-381,共10页
目的:探讨核仁前rRNA加工蛋白NIP7(NIP7)在维持甲状腺未分化癌(ATC)恶性表型中的作用及分子机制。方法:利用基因表达谱芯片(GSE33630)、蛋白质组学数据集(IPX0008941000)和Dependency Map数据库分别分析NIP7在ATC组织中的表达及细胞上... 目的:探讨核仁前rRNA加工蛋白NIP7(NIP7)在维持甲状腺未分化癌(ATC)恶性表型中的作用及分子机制。方法:利用基因表达谱芯片(GSE33630)、蛋白质组学数据集(IPX0008941000)和Dependency Map数据库分别分析NIP7在ATC组织中的表达及细胞上的基因敲除效应。通过蛋白质印迹法检测NIP7在正常甲状腺细胞、甲状腺乳头状癌细胞和ATC细胞上的表达及定位。在ATC细胞上转染小干扰RNA并用定量逆转录聚合酶链反应(qRT-PCR)和蛋白质印迹法检测NIP7的沉默效率。进一步利用CCK-8法检测细胞增殖能力,平板克隆实验检测克隆形成能力,裸鼠皮下成瘤实验评估肿瘤生长。使用嘌呤霉素掺入实验结合免疫共沉淀验证沉默NIP7对泛素缀合酶E2 C(UBE2C)翻译的影响。最后通过基因集富集分析筛选NIP7和UBE2C的共同通路并利用qRT-PCR进行验证。结果:与正常组织及甲状腺乳头状癌组织比较,NIP7在ATC组织中显著上调,且在不同ATC细胞上均有较强的基因敲除效应。ATC细胞中NIP7蛋白相对表达显著高于人正常甲状腺细胞,且主要表达于细胞核。沉默NIP7显著抑制不同ATC细胞的增殖能力,并减少细胞克隆形成数。体内研究显示,敲除NIP7可显著减缓ATC裸鼠异种移植瘤的生长速度,并且肿瘤体积和质量均小于对照组(均P<0.05)。机制研究表明,沉默NIP7可引起UBE2C新生蛋白表达下调,而不影响UBE2C信使RNA表达。与对照组比较,沉默UBE2C显著抑制ATC细胞增殖(P<0.01)和克隆形成能力(P<0.05),且过表达UBE2C可逆转沉默NIP7对细胞增殖的抑制作用(P<0.01)。基因集富集分析表明NIP7和UBE2C共同参与DNA复制,沉默NIP7或UBE2C均可明显下调DNA复制通路中DNA聚合酶ε催化亚基2和复制因子4的表达水平。结论:NIP7通过促进UBE2C翻译介导DNA复制,从而促进ATC生长。 展开更多
关键词 甲状腺未分化癌 核糖体生物合成 核仁前rRNA加工蛋白NIP7 泛素缀合酶E2 C DNA复制
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PES1 Repression Triggers Ribosomal Biogenesis Impairment and Cellular Senescence Through p53 Pathway Activation
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作者 ZHANG Chang-Jian LI Yu-Fang +4 位作者 WU Feng-Yun JIN Rui NIU Chang YE Qi-Nong CHENG Long 《生物化学与生物物理进展》 北大核心 2025年第7期1853-1865,共13页
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 ... 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. 展开更多
关键词 PES1 cellular senescence ribosomal biogenesis P53
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