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Deregulated expression of the imprinted DLK1-DIO3 region in glioblastoma stemlike cells: tumor suppressor role of lncRNA MEG3

机译:胶质母细胞瘤干燥细胞中印迹DLK1-DIO3区域的Derigation表达:LNCRNA MEG3的肿瘤抑制作用

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摘要

Background. Glioblastoma (GBM) stemlike cells (GSCs) are thought to be responsible for the maintenance and aggressiveness of GBM, the most common primary brain tumor in adults. This study aims at elucidating the involvement of deregulations within the imprinted delta-like homolog 1 gene-type III iodothyronine deiodinase gene (DLK-DIO3) region on chromosome 14q32 in GBM pathogenesis.Methods. Real-time PCR analyses were performed on GSCs and GBM tissues. Methylation analyses, gene expression, and reverse-phase protein array profiles were used to investigate the tumor suppressor function of the maternally expressed 3 gene (MEG3).Results. Loss of expression of genes and noncoding RNAs within the DLK1-DIO3 region was observed in GSCs and GBM tissues compared with normal brain. This downregulation is mainly mediated by epigenetic silencing. KaplanMeier analysis indicated that low expression of MEG3 and MEG8 long noncoding (lnc)RNAs significantly correlated with short survival in GBM patients. MEG3 restoration impairs tumorigenic abilities of GSCs in vitro by inhibiting cell growth, migration, and colony formation and decreases in vivo tumor growth, reducing infiltrative growth.These effects were associated with modulation of genes involved in cell adhesion and epithelial-to-mesenchymal transition (EMT).Conclusion. In GBM, MEG3 acts as a tumor suppressor mainly regulating cell adhesion, EMT, and cell proliferation, thus providing a potential candidate for novel GBM therapies.
机译:背景。胶质母细胞(GBM)胶质细胞(GSC)被认为是GBM的维持和侵蚀性,是成人中最常见的原发性脑肿瘤。本研究旨在阐明在GBM致病机制中染色体14Q32的印迹δ样同源物1基因型III碘噻吩脱碘酶基因(DLK-DIO3)区域中的放管酰胺。方法。对GSC和GBM组织进行实时PCR分析。使用甲基化分析,基因表达和反相蛋白阵列曲线来研究母体表达3基因的肿瘤抑制函数(MEG3).Results。与正常大脑相比,在GSC和GBM组织中观察到基因的表达和非分量RNA的表达丧失。该下调主要由表观遗传沉默介导。 Kaplanmeier分析表明,Meg3和Meg8长的Noncoding(LNC)RNA的低表达与GBM患者的短暂存活显着相关。 Meg3恢复通过抑制细胞生长,迁移和菌落形成,在体外形成,减少体内肿瘤生长,降低渗透生长。这些效果与参与细胞粘附和上皮 - 间充质转换的基因的调节有关的催化能力EMT)。结论。在GBM中,MEG3充当肿瘤抑制剂,主要是调节细胞粘附,EMT和细胞增殖,从而为新的GBM疗法提供潜在的候选者。

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  • 来源
    《Neuro-Oncology》 |2020年第12期|1771-1784|共14页
  • 作者单位

    Dept Oncol & Mol Med Rome Italy;

    Dept Oncol & Mol Med Rome Italy;

    Higher Inst Hlth Environm & Hlth Rome Italy;

    Ist Super Sanita Core Facil Higher Inst Hlth Rome Italy;

    Sci Hospitalizat & Care Inst IRCCS A Gemelli Univ Polyclin Fdn Rome Italy|Catholic Univ Sch Med Inst Pathol Rome Italy;

    Sci Hospitalizat & Care Inst IRCCS A Gemelli Univ Polyclin Fdn Rome Italy|Catholic Univ Sch Med Inst Neurosurg Rome Italy;

    Sci Hospitalizat & Care Inst IRCCS A Gemelli Univ Polyclin Fdn Rome Italy|Catholic Univ Sch Med Inst Human Anat Rome Italy;

    Catholic Univ Sch Med Inst Genom Med Rome Italy;

    Dept Oncol & Mol Med Rome Italy;

    Univ Salerno Scuola Mod Salernitana Dept Med Surg & Dent Lab Mol Med & Genom Salerno Italy|Univ Salerno Genomix4Life Srl Salerno Italy;

    Ist Super Sanita Core Facil Higher Inst Hlth Rome Italy;

    Dept Oncol & Mol Med Rome Italy;

    Catholic Univ Sch Med Inst Genom Med Rome Italy;

    Dept Oncol & Mol Med Rome Italy;

    Dept Oncol & Mol Med Rome Italy;

    Sci Hospitalizat & Care Inst IRCCS A Gemelli Univ Polyclin Fdn Rome Italy|Catholic Univ Sch Med Inst Genom Med Rome Italy;

    Sci Hospitalizat & Care Inst IRCCS A Gemelli Univ Polyclin Fdn Rome Italy|Catholic Univ Sch Med Inst Neurosurg Rome Italy;

    Catholic Univ Sch Med Inst Genom Med Rome Italy;

    Dept Oncol & Mol Med Rome Italy;

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  • 入库时间 2022-08-18 23:31:58

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