首页> 外文期刊>Molecular cancer research: MCR >Regulation of cell cycle genes and induction of senescence by overexpression of OTX2 in medulloblastoma cell lines.
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Regulation of cell cycle genes and induction of senescence by overexpression of OTX2 in medulloblastoma cell lines.

机译:在髓母细胞瘤细胞系中通过OTX2的过表达来调节细胞周期基因并诱导衰老。

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The transcription factor orthodenticle homeobox 2 (OTX2) has been implicated in the pathogenesis of medulloblastoma, as it is often highly expressed and sometimes amplified in these tumors. Little is known of the downstream pathways regulated by OTX2. We therefore generated MED8A and DAOY medulloblastoma cell lines with doxycycline-inducible OTX2 expression. In both cell lines, OTX2 inhibited proliferation and induced a senescence-like phenotype with senescence-associated beta-galactosidase activity. Expression profiles of time series after OTX2 induction in MED8A showed early upregulation of cell cycle genes related to the G(2)-M phase, such as AURKA, CDC25C, and CCNG2. Paradoxically, G(1)-S phase genes such as MYC, CDK4, CDK6, CCND1, and CCND2 were strongly downregulated, in line with the observed G(1) arrest. ChIP-on-chip analyses of OTX2 binding to promoter regions in MED8A and DAOY showed a strong enrichment for binding to the G(2)-M genes, suggesting a direct activation. Their mRNA expression correlated with OTX2 expression in primary tumors, underscoring the in vivo relevance of this regulation. OTX2 induction activated the P53 pathway in MED8A, but not in DAOY, which carries a mutated P53 gene. In DAOY cells, senescence-associated secretory factors, such as interleukin-6 and insulin-like growth factor binding protein 7, were strongly upregulated after OTX2 induction. We hypothesize that the imbalance in cell cycle stimulation by OTX2 leads to cellular senescence either by activating the P53 pathway or through the induction of secretory factors. Our data indicate that OTX2 directly induces a series of cell cycle genes but requires cooperating genes for an oncogenic acceleration of the cell cycle.
机译:转录因子直齿同源异型盒2(OTX2)与髓母细胞瘤的发病机理有关,因为它经常在这些肿瘤中高表达,有时会扩增。对于由OTX2调控的下游途径知之甚少。因此,我们产生了具有强力霉素诱导的OTX2表达的MED8A和DAOY髓母细胞瘤细胞系。在两种细胞系中,OTX2抑制增殖并诱导具有衰老相关的β-半乳糖苷酶活性的衰老样表型。在MED8A中OTX2诱导后的时间序列表达谱显示与G(2)-M期有关的细胞周期基因的早期上调,例如AURKA,CDC25C和CCNG2。矛盾的是,G(1)-S期基因如MYC,CDK4,CDK6,CCND1和CCND2被强烈下调,与观察到的G(1)停滞相一致。 OTX2绑定到MED8A和DAOY中的启动子区域的片上芯片分析显示结合到G(2)-M基因,表明直接激活强烈浓缩。它们的mRNA表达与原发性肿瘤中的OTX2表达相关,强调了该调节的体内相关性。 OTX2诱导激活了MED8A中的P53途径,但未激活DAOY中的P53途径,后者携带一个突变的P53基因。在DAOY细胞中,衰老相关的分泌因子,例如白介素6和胰岛素样生长因子结合蛋白7,在OTX2诱导后被强烈上调。我们假设通过激活P53途径或诱导分泌因子,OTX2刺激细胞周期的失衡导致细胞衰老。我们的数据表明,OTX2直接诱导一系列细胞周期基因,但需要协同作用的基因来促进细胞周期的致癌性。

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