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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Sequential activation of snail1 and N-myc modulates sonic hedgehog-induced transformation of neural cells.
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Sequential activation of snail1 and N-myc modulates sonic hedgehog-induced transformation of neural cells.

机译:snail1和N-myc的顺序激活可调节声波刺猬诱导的神经细胞转化。

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Activation of the Sonic hedgehog (Shh) pathway and increased expression of Gli1 play an important role in proliferation and transformation of granule cell progenitors (GCP) in the developing cerebellum. Medulloblastomas arising from cerebellar GCPs are frequently driven by Shh pathway-activating mutations; however, molecular mechanisms of Shh pathway dysregulation and transformation of neural progenitors remain poorly defined. We report that the transcription factor and oncogene Snail1 (Sna1) is directly induced by Shh pathway activity in GCPs, murine medulloblastomas, and human medulloblastoma cells. Enforced expression of Sna1 was sufficient to induce GCPs and medulloblastoma cell proliferation in the absence of Shh/Gli1 exposure. In addition, enforced expression of Sna1 increased transformation of medulloblastoma cells in vitro and in vivo. Analysis of potential Sna1 targets in neural cells revealed a novel Sna1 target, N-Myc, a transcription factor known to play a role in Shh-mediated GCP proliferation and medulloblastoma formation. We found that Sna1 directly induced transcription of N-Myc in human medulloblastoma cells and that depletion of N-Myc ablated the Sna1-induced proliferation and transformation. Taken together, these results provide further insight into the mechanism of Shh-induced transformation of neural progenitor cells and suggest that induction of Sna1 may serve to amplify the oncogenic potential of Shh pathway activation through N-Myc induction. Cancer Res; 71(15); 5336-45. (c)2011 AACR.
机译:声波刺猬(Shh)通路的激活和Gli1的表达增加在发育中的小脑中的颗粒细胞祖细胞(GCP)的增殖和转化中起重要作用。小脑GCP引起的髓母细胞瘤通常由Shh途径激活突变驱动。然而,Shh通路失调和神经祖细胞转化的分子机制仍然不清楚。我们报告说,转录因子和癌基因Snail1(Sna1)是由GCP,小鼠髓母细胞瘤和人类髓母细胞瘤细胞中的Shh途径活性直接诱导的。在没有Shh / Gli1暴露的情况下,Sna1的增强表达足以诱导GCP和髓母细胞瘤细胞增殖。此外,Sna1的强制表达增加了在体外和体内髓母细胞瘤细胞的转化。对神经细胞中潜在Sna1靶标的分析揭示了一种新型Sna1靶标N-Myc,这是一种转录因子,已知在Shh介导的GCP增殖和髓母细胞瘤形成中起作用。我们发现,Sna1直接诱导人髓母细胞瘤细胞中N-Myc的转录,而N-Myc的消耗消除了Sna1诱导的增殖和转化。两者合计,这些结果提供进一步了解Shh诱导的神经祖细胞转化的机制,并表明Sna1的诱导可能通过N-Myc诱导来放大Shh途径激活的致癌潜力。癌症研究; 71(15); 5336-45。 (c)2011年美国机修协会。

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