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Identification d'une nouvelle fonction oncogénique de BMI1 à travers la répression du gène suppresseur de tumeur CCNG2 : une fenêtre thérapeutique potentielle

机译:通过抑制肿瘤抑制基因CCNG2鉴定BMI1的新致癌功能:潜在的治疗窗口

摘要

The polycomb protein Bmi1 is a major epigenetic regulator. It has been shown that this protein is essential for the regulation of cell proliferation, senescence and metabolism but also self-Renewal of hematopoïetic and cancer stem cells. This transcriptional repressor, with a strong oncogenic potential, is overexpressed in many types of cancer. In case of Chronic Myeloid Leukemia (CML) the expression level of BMI1 is associated with worsening prognosis. However, the signaling pathways involved in its overexpression and its role in this disease remains unclear. By using RNAi to repress BMI1 expression we highlighted that this polycomb was essential for proliferation and clonogenicity of CML cells. We also demonstrated, for the first time, that BMI1 supported tumor growth through repression of deleterious cancer cell autophagy. A transcriptomic approach allowed us to identify a transcriptional target involved in this process: the Cyclin G2. Through a bioinformatic approach, we finally found a molecule capable of expression re-Induction of Cyclin G2 in CML cells : alexidine dihydrochloride. This molecule induced a high level of autophagy as well as apopotosis in cancer cells. It had also been able to re-Sensitize to imatinib a resistant cell line. In conclusion, our results revealed a new role for the polycomb BMI1 in supporting the CML pathology. Moreover, our work allowed the identification of two new approaches for therapeutically targeting this oncogene functions.
机译:聚梳蛋白Bmi1是主要的表观遗传调控因子。已经表明,该蛋白对于调节细胞增殖,衰老和代谢是必需的,而且对于造血干细胞和癌症干细胞的自我更新也是必不可少的。具有强大的致癌潜力的这种转录阻遏物在许多类型的癌症中均过表达。在慢性粒细胞白血病(CML)的情况下,BMI1的表达水平与预后恶化有关。然而,涉及其过表达及其在该疾病中的作用的信号传导途径仍不清楚。通过使用RNAi抑制BMI1表达,我们强调了这种多梳对CML细胞的增殖和克隆形成至关重要。我们还首次证明BMI1通过抑制有害癌细胞自噬来支持肿瘤生长。转录组学方法使我们能够确定参与此过程的转录靶标:Cyclin G2。通过生物信息学的方法,我们最终发现了一种能够在CML细胞中表达细胞周期蛋白G2的再诱导分子:阿来西定二盐酸盐。该分子在癌细胞中诱导了高水平的自噬以及细胞凋亡。它也能够重新敏化伊马替尼耐药细胞系。总之,我们的结果揭示了多梳BMI1在支持CML病理学中的新作用。此外,我们的工作允许确定两种针对该癌基因功能的治疗新方法。

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    Mourgues Lucas;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 fr
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