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ETV2 mediates endothelial transdifferentiation of glioblastoma

机译:ETV2介导胶质母细胞瘤的内皮细胞转分化

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Glioblastoma multiforme (GBM) is characterized by extensive endothelial hyperplasia. Recent studies suggest that a subpopulation of endothelial cells originates via vasculogenesis by the transdifferentiation of GBM tumor cells into endothelial cells (endo-transdifferentiation). The molecular mechanism underlying this process remains poorly defined. Here, we show that the expression of ETS variant 2 (ETV2), a master regulator of endothelial cell development, is highly correlated with malignancy. Functional studies demonstrate that ETV2 is sufficient and necessary for the transdifferentiation of a subpopulation of CD133+/Nestin+ GBMeural stem cells to an endothelial lineage. Combinational studies of ChIP-Seq with gain-of-function RNA-Seq data sets suggest that ETV2, in addition to activating vascular genes, represses proneural genes to direct endo-transdifferentiation. Since endo-transdifferentiation by ETV2 is VEGF-A independent, it likely accounts for the observed resistance of GBM tumor cells to anti-angiogenesis therapy. Further characterization of the regulatory networks mediated by ETV2 in endo-transdifferentiation of GBM tumor cells should lead to the identification of more effective therapeutic targets for GBM.
机译:多形胶质母细胞瘤(GBM)的特征是广泛的内皮细胞增生。最近的研究表明,内皮细胞的亚群是通过将GBM肿瘤细胞转分化为内皮细胞(内转分化)而通过血管生成而产生的。这个过程的分子机制尚不明确。在这里,我们显示ETS变体2(ETV2)的表达,内皮细胞发育的主要监管者,与恶性肿瘤高度相关。功能研究表明,ETV2对于将CD133 + / Nestin + GBM /神经干细胞亚群转分化为内皮细胞系是足够且必要的。 ChIP-Seq与功能获得性RNA-Seq数据集的组合研究表明,ETV2除了激活血管基因外,还抑制前神经基因以指导内转分化。由于ETV2的内转分化是VEGF-A无关的,因此它很可能解释了GBM肿瘤细胞对抗血管生成治疗的抗性。由ETV2介导的GBM肿瘤细胞内转分化中调控网络的进一步表征应导致鉴定出更有效的GBM治疗靶标。

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