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Perturbation of 14q32 miRNAs-cMYC gene network in osteosarcoma

机译:骨肉瘤中14q32 miRNAs-cMYC基因网络的扰动

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Osteosarcoma (OS) is the common histological form of primary bone cancer and one of the leading aggressive cancers in children under age fifteen. Although several genetic predisposing conditions have been associated with OS the understanding of its molecular etiology is limited. Here, we show that microRNAs (miRNAs) at the chr.14q32 locus are significantly downregulated in osteosarcoma compared to normal bone tissues. Bioinformatic predictions identified that a subset of 14q32 miRNAs (miR-382, miR-369-3p, miR-544 and miR-134) could potentially target cMYC transcript. The physical interaction between these 14q32 miRNAs and cMYC was validated using reporter assays. Further, restoring expression of these four 14q32 miRNAs decreased cMYC levels and induced apoptosis in Saos2 cells. We also show that exogenous expression of 14q32 miRNAs in Saos2 cells significantly downregulated miR-17-92, a transcriptional target of cMYC. The pro-apoptotic effect of 14q32 miRNAs in Saos2 cells was rescued either by overexpression of cMYC cDNA without the 3'UTR or with miR-17-92 cluster. Further, array comparative genomic hybridization studies showed no DNA copy number changes at 14q32 locus in OS patient samples suggesting that downregulation of 14q32 miRNAs are not due to deletion at this locus. Together, our data support a model where the deregulation of a network involving 14q32 miRNAs, cMYC and miR-17-92 miRNAs could contribute to osteosarcoma pathogenesis.
机译:骨肉瘤(OS)是原发性骨癌的常见组织学形式,也是15岁以下儿童中最主要的侵袭性癌症之一。尽管几种遗传易感性条件与OS相关,但对其分子病因学的理解是有限的。在这里,我们显示与正常的骨组织相比,骨肉瘤中chr.14q32位点的microRNA(miRNA)显着下调。生物信息学预测确定14q32 miRNA的子集(miR-382,miR-369-3p,miR-544和miR-134)可能靶向cMYC转录本。这些14q32 miRNA与cMYC之间的物理相互作用已通过报告基因分析得以验证。此外,恢复这四个14q32 miRNA的表达可降低cMYC水平并诱导Saos2细胞凋亡。我们还显示,Saos2细胞中14q32 miRNA的外源表达显着下调了miR-17-92(cMYC的转录靶标)。通过不表达3'UTR或带有miR-17-92簇的cMYC cDNA的过表达,可以挽救14q32 miRNA在Saos2细胞中的促凋亡作用。此外,阵列比较基因组杂交研究显示OS患者样品中14q32位点的DNA拷贝数没有变化,这表明14q32 miRNA的下调不是由于该位点的缺失引起的。总之,我们的数据支持一个模型,其中涉及14q32 miRNA,cMYC和miR-17-92 miRNA的网络的失调可能有助于骨肉瘤的发病。

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