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De-repression of CTGF via the miR-17-92 cluster upon differentiation of human glioblastoma spheroid cultures

机译:人成胶质细胞瘤球体培养物分化后经由miR-17-92簇抑制CTGF的表达

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All-trans retinoic acid is a potent promoter of cellular differentiation processes, which is used in cancer therapy. Glioblastoma spheroid cultures are enriched in tumor-initiating cells, and provide a model to test new treatment options in vitro. We investigated the molecular mechanisms of response to exposure to differentiation-promoting conditions in such cultures. Microarray analyses of five independent cultures showed that after induction of differentiation, inhibitors of transforming growth factor-β/bone morphogenetic protein, Wnt/β-catenin and IGF signaling were upregulated, whereas expression of several microRNAs decreased, particularly that of the miR-17-92 cluster. In primary astrocytic gliomas (n=82), expression of several members of miR-17-92 was significantly higher relative to those of normal brain (n=8) and significantly increased with tumor grade progression (PmiR-17-92 locus was detected in one glioblastoma specimen. Transfection of inhibitors of miR-17-92 induced increased apoptosis and decreased cell proliferation in glioblastoma spheroids. Mir-17-92 inhibition was also associated with increased messenger RNA (mRNA) and/or protein expression of CDKN1A, E2F1, PTEN and CTGF. The CTGF gene was shown to be a target of miR-17-92 in glioblastoma spheroids by luciferase reporter assays. Our results suggest that miR-17-92 and its target CTGF mediate effects of differentiation-promoting treatment on glioblastoma cells through multiple regulatory pathways.
机译:全反式视黄酸是细胞分化过程的有效启动子,可用于癌症治疗。胶质母细胞瘤球状培养物富含肿瘤引发细胞,并提供了一种模型来测试体外新的治疗方法。我们调查了在这种文化中暴露于分化促进条件的响应的分子机制。对五种独立培养物的微阵列分析表明,诱导分化后,转化生长因子-β/骨形态发生蛋白,Wnt /β-catenin和IGF信号转导的抑制剂被上调,而一些微RNA的表达下降,尤其是miR-17的表达下降。 -92集群。在原发性星形细胞神经胶质瘤(n = 82)中,miR-17-92的几个成员的表达相对于正常脑(n = 8)明显更高,并且随着肿瘤等级的发展而显着增加(检测到PmiR-17-92基因在一个胶质母细胞瘤标本中转染miR-17-92抑制剂可诱导胶质母细胞瘤球体凋亡增加,细胞增殖减少; Mir-17-92抑制也与CDKN1A,E2F1的信使RNA(mRNA)和/或蛋白表达增加有关荧光素酶报告基因检测显示,CTGF基因是胶质母细胞瘤球体中miR-17-92的靶标,我们的结果表明miR-17-92及其靶标CTGF介导了分化促进治疗对胶质母细胞瘤的作用。细胞通过多种调控途径。

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