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首页> 外文期刊>Gastroenterology >Down-regulation of MicroRNA-494 via loss of SMAD4 increases FOXM1 and β-catenin signaling in pancreatic ductal adenocarcinoma cells
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Down-regulation of MicroRNA-494 via loss of SMAD4 increases FOXM1 and β-catenin signaling in pancreatic ductal adenocarcinoma cells

机译:通过丢失SMAD4来下调MicroRNA-494的表达增加胰腺导管腺癌细胞中的FOXM1和β-catenin信号传导

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Background & Aims Dysregulation of β-catenin and the transcriptional activator FOXM1 mediate oncogenesis, but it is not clear how these proteins become dysregulated in tumors that do not typically carry mutations in adenomatous polyposis coli (APC) or β-catenin, such as pancreatic ductal adenocarcinomas (PDACs). We searched for microRNAs that regulate levels of FOXM1 in PDAC cells and samples from patients. Methods We identified microRNAs that affect levels of FOXM1 in PDACs using bioinformatic, genetic, and pharmacologic approaches. We altered expression of the microRNA-494 (miR-494) in PDAC cell lines (AsPC-1 and PANC-1) and examined the effects on FOXM1 and β-catenin signaling and cell proliferation and colony formation. The cells were injected into immunocompromised mice and growth of xenograft tumors and liver metastases were measured. We performed immunohistochemical analyses of 10 paired PDAC and nontumor pancreatic tissue samples collected from untreated patients during surgery. Results We identified miR-494 as a negative regulator of FOXM1 levels in PDAC cells, and found that levels of this microRNA were reduced in PDAC specimens, compared with nontumor tissues. Loss of response of PDAC cells to transforming growth factor β, owing to SMAD4 deficiency, reduced expression of miR-494. Transgenic expression of miR-494 in PDAC cells produced the same effects as reducing expression of FOXM1 or blocking nuclear translocation of β-catenin, reducing cell proliferation, migration, and invasion, and increasing their sensitivity to gemcitabine. Reduced expression of miR-494 correlated with PDAC metastasis and reduced survival times of patients. Conclusions Loss of SMAD4 in PDAC cells leads to reduced levels of miR-494, increased levels of FOXM1, and nuclear localization of β-catenin. miR-494 might be developed as a prognostic marker for patients with PDAC or a therapeutic target.
机译:背景与目的β-catenin和转录激活因子FOXM1的失调介导了肿瘤的发生,但尚不清楚这些蛋白质如何在通常不携带腺瘤性息肉病(APC)或β-catenin突变的肿瘤(如胰管)中失调。腺癌(PDAC)。我们搜索了可调节PDAC细胞和患者样品中FOXM1水平的microRNA。方法我们使用生物信息学,遗传和药理学方法鉴定了影响PDAC中FOXM1水平的microRNA。我们改变了PDAC细胞系(AsPC-1和PANC-1)中microRNA-494(miR-494)的表达,并研究了对FOXM1和β-catenin信号传导以及细胞增殖和集落形成的影响。将细胞注射到免疫受损的小鼠中,并测量异种移植肿瘤和肝转移的生长。我们对手术中从未经治疗的患者中收集的10对PDAC和非肿瘤胰腺组织样本进行了免疫组织化学分析。结果我们确定了miR-494是PDAC细胞中FOXM1水平的负调节剂,发现与非肿瘤组织相比,PDAC标本中这种microRNA的水平降低了。由于SMAD4缺乏,PDAC细胞对转化生长因子β的反应丧失,导致miR-494的表达降低。 miR-494在PDAC细胞中的转基因表达产生与减少FOXM1的表达或阻断β-catenin的核转运,减少细胞增殖,迁移和侵袭以及增加其对吉西他滨的敏感性相同的作用。 miR-494的表达减少与PDAC转移相关,并缩短了患者的生存时间。结论PDAC细胞中SMAD4的缺失导致miR-494的水平降低,FOXM1的水平升高以及β-catenin的核定位。 miR-494可能被开发为PDAC或治疗靶标患者的预后标志物。

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