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In silico Analysis of Combinatorial microRNA Activity Reveals Target Genes and Pathways Associated with Breast Cancer Metastasis

机译:组合微RNA活性的计算机分析揭示了靶基因和与乳腺癌转移相关的途径。

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摘要

This is an open access article. Unrestricted non-commercial use is permitted provided the original work is properly cited.Aberrant microRNA activity has been reported in many diseases, and studies often find numerous microRNAs concurrently dysregulated. Most target genes have binding sites for multiple microRNAs, and mounting evidence indicates that it is important to consider their combinatorial effect on target gene repression. A recent study associated the coincident loss of expression of six microRNAs with metastatic potential in breast cancer. Here, we used a new computational method, miR-AT!, to investigate combinatorial activity among this group of microRNAs. We found that the set of transcripts having multiple target sites for these microRNAs was significantly enriched with genes involved in cellular processes commonly perturbed in metastatic tumors: cell cycle regulation, cytoskeleton organization, and cell adhesion. Network analysis revealed numerous target genes upstream of cyclin D1 and c-Myc, indicating that the collective loss of the six microRNAs may have a focal effect on these two key regulatory nodes. A number of genes previously implicated in cancer metastasis are among the predicted combinatorial targets, including TGFB1, ARPC3, and RANKL. In summary, our analysis reveals extensive combinatorial interactions that have notable implications for their potential role in breast cancer metastasis and in therapeutic development.
机译:这是一个开放获取的文章。只要适当引用了原始工作,就可以不受限制地用于非商业用途。在许多疾病中都有异常的microRNA活性报道,而且研究经常发现许多microRNA同时失调。大多数靶基因具有多个microRNA的结合位点,越来越多的证据表明,重要的是要考虑它们对靶基因阻抑的组合作用。最近的一项研究将六种微RNA的同时表达缺失与乳腺癌的转移潜力相关联。在这里,我们使用一种新的计算方法miR-AT!来研究这组microRNA之间的组合活性。我们发现,这些microRNA具有多个目标位点的转录本集显着富集了与通常在转移性肿瘤中扰动的细胞过程有关的基因:细胞周期调控,细胞骨架组织和细胞粘附。网络分析揭示了细胞周期蛋白D1和c-Myc上游的许多靶基因,表明这六个microRNA的集体丧失可能对这两个关键调控节点有集中作用。先前与癌症转移有关的许多基因都在预测的组合靶标中,包括TGFB1,ARPC3和RANKL。总之,我们的分析揭示了广泛的组合相互作用,这些相互作用对其在乳腺癌转移和治疗发展中的潜在作用具有重要意义。

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