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Alpha6-Integrin Regulates FGFR1 Expression through the ZEB1/YAP1 Transcription Complex in Glioblastoma Stem Cells Resulting in Enhanced Proliferation and Stemness

机译:Alpha6-整合素通过胶质母细胞瘤干细胞中的ZEB1 / YAP1转录复合物调节FGFR1表达,从而导致增殖和干性增强。

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Glioblastoma (GBM) is the most lethal primary brain tumor in adults and is known to be particularly aggressive and resistant to anti-cancer therapies, mainly due to the presence of GBM stem cells (GBMSC). By in vitro approaches supported by analysis from patients’ databases, we determined how α6-integrin and Fibroblast Growth Factor Receptor 1 (FGFR1) work in concert to regulate proliferation and stemness of GBMSC. We showed that α6-integrin regulates the expression of FGFR1 and its target gene Fokhead Box M1 (FOXM1) via the ZEB1/YAP1 transcription complex. These results were in accordance with the positive correlation observed in GBM between α6-integrin expression and its target genes ZEB1/YAP1, FGFR1, and FOXM1 in the databases, TCGA and Rembrandt. In addition, the clinical data demonstrate that GBM patients with high levels of the five genes signature, including α6-integrin, ZEB1/YAP1, FGFR1 and FOXM1, have a significantly shorter overall survival. In vitro, we observed a similar decrease in the expression of stemness-related factors, neurospheres forming capacity, as well as spheroids growth when α6-integrin or FGFR1 was blocked individually with specific siRNA, whereas the combination of both siRNA led to a significantly higher inhibition of spheres formation. These data suggest that co-administration of anti-FGFR1 and anti-α6-integrin could provide an improved therapeutic response in GBMSC.
机译:胶质母细胞瘤(GBM)是成人中最致命的原发性脑肿瘤,并且众所周知,它特别具有侵略性,并且对抗癌疗法有抵抗力,这主要归因于存在GBM干细胞(GBMSC)。通过患者数据库分析所支持的体外方法,我们确定了α6-整合素和成纤维细胞生长因子受体1(FGFR1)如何协同调节GBMSC的增殖和干性。我们显示,α6-整联蛋白通过ZEB1 / YAP1转录复合物调节FGFR1及其靶基因Fokhead Box M1(FOXM1)的表达。这些结果与在GBM中观察到的α6-整合素表达与其目标基因ZEB1 / YAP1,FGFR1和FOXM1在数据库TCGA和伦勃朗中的正相关性相符。此外,临床数据表明,具有高水平的五个基因标志的GBM患者(包括α6-整联蛋白,ZEB1 / YAP1,FGFR1和FOXM1)的总生存期明显缩短。在体外,当α6-整合素或FGFR1分别被特异性siRNA阻断时,干性相关因子的表达,神经球形成能力以及球体的生长也出现了类似的下降,而两种siRNA的组合导致明显更高的表达。抑制球体的形成。这些数据表明,抗-FGFR1和抗-α6-整联蛋白的共同施用可以在GBMSC中提供改善的治疗反应。

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