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RNA-Binding Protein Musashi1 Modulates Glioma Cell Growth through the Post-Transcriptional Regulation of Notch and PI3 Kinase/Akt Signaling Pathways

机译:RNA结合蛋白Musashi1通过Notch和PI3激酶/ Akt信号通路的转录后调节调节胶质瘤细胞的生长。

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摘要

Musashi1 (MSI1) is an RNA-binding protein that plays critical roles in nervous-system development and stem-cell self-renewal. Here, we examined its role in the progression of glioma. Short hairpin RNA (shRNA)-based MSI1-knock down (KD) in glioblastoma and medulloblastoma cells resulted in a significantly lower number of self renewing colony on day 30 (a 65% reduction), compared with non-silencing shRNA-treated control cells, indicative of an inhibitory effect of MSI1-KD on tumor cell growth and survival. Immunocytochemical staining of the MSI1-KD glioblastoma cells indicated that they ectopically expressed metaphase markers. In addition, a 2.2-fold increase in the number of MSI1-KD cells in the G2/M phase was observed. Thus, MSI1-KD caused the prolongation of mitosis and reduced the cell survival, although the expression of activated Caspase-3 was unaltered. We further showed that MSI1-KD glioblastoma cells xenografted into the brains of NOD/SCID mice formed tumors that were 96.6% smaller, as measured by a bioluminescence imaging system (BLI), than non-KD cells, and the host survival was longer (49.3±6.1 days vs. 33.6±3.6 days; P<0.01). These findings and other cell biological analyses suggested that the reduction of MSI1 in glioma cells prolonged the cell cycle by inducing the accumulation of Cyclin B1. Furthermore, MSI1-KD reduced the activities of the Notch and PI3 kinase-Akt signaling pathways, through the up-regulation of Numb and PTEN, respectively. Exposure of glioma cells to chemical inhibitors of these pathways reduced the number of spheres and living cells, as did MSI1-KD. These results suggest that MSI1 increases the growth and/or survival of certain types of glioma cells by promoting the activation of both Notch and PI3 kinase/Akt signaling.
机译:Musashi1(MSI1)是一种RNA结合蛋白,在神经系统发育和干细胞自我更新中发挥关键作用。在这里,我们检查了它在神经胶质瘤进展中的作用。与未经沉默的shRNA处理的对照细胞相比,胶质母细胞瘤和髓母细胞瘤细胞中基于短发夹RNA(shRNA)的MSI1敲低(KD)导致自我更新集落的数量明显减少(减少了65%)表示MSI1-KD对肿瘤细胞的生长和存活具有抑制作用。 MSI1-KD胶质母细胞瘤细胞的免疫细胞化学染色表明,它们异位表达了中期标记。另外,观察到G2 / M期的MSI1-KD细胞数目增加了2.2倍。因此,尽管激活的Caspase-3的表达没有改变,MSI1-KD却导致有丝分裂的延长并降低了细胞的存活率。我们进一步表明,通过生物发光成像系统(BLI)测量,异种移植到NOD / SCID小鼠脑中的MSI1-KD胶质母细胞瘤细胞形成的肿瘤比非KD细胞小96.6%,并且宿主存活时间更长( 49.3±6.1天vs.33.6±3.6天; P <0.01)。这些发现和其他细胞生物学分析表明,胶质瘤细胞中MSI1的减少通过诱导细胞周期蛋白B1的积累而延长了细胞周期。此外,MSI1-KD通过分别上调Numb和PTEN的表达而降低了Notch和PI3激酶-Akt信号通路的活性。与MSI1-KD一样,将胶质瘤细胞暴露于这些途径的化学抑制剂可减少球体和活细胞的数量。这些结果表明,MSI1通过促进Notch和PI3激酶/ Akt信号传导的激活来增加某些类型的神经胶质瘤细胞的生长和/或存活。

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