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Dissecting the regulation rules of cancer-related miRNAs based on network analysis

机译:基于网络分析解剖与癌症有关的miRNA的调控规则

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摘要

miRNAs (microRNAs) are a set of endogenous and small non-coding RNAs which specifically induce degradation of target mRNAs or inhibit protein translation to control gene expression. Obviously, aberrant miRNA expression in human cells will lead to a serious of changes in protein-protein interaction network (PPIN), thus to activate or inactivate some pathways related to various diseases, especially carcinogenesis. In this study, we systematically constructed the miRNA-regulated co-expressed protein-protein interaction network (CePPIN) for 17 cancers firstly. We investigated the topological parameters and functional annotation for the proteins in CePPIN, especially for those miRNA targets. We found that targets regulated by more miRNAs tend to play a more important role in the forming process of cancers. We further elucidated the miRNA regulation rules in PPIN from a more systematical perspective. By GO and KEGG pathway analysis, miRNA targets are involved in various cellular processes mostly related to cell cycle, such as cell proliferation, growth, differentiation, etc. Through the Pfam classification, we found that miRNAs belonging to the same family tend to have targets from the same family which displays the synergistic function of these miRNAs. Finally, the case study on miR-519d and miR-21-regulated sub-network was performed to support our findings.
机译:miRNA(microRNA)是一组内源性和小的非编码RNA,它们特异性地诱导目标mRNA降解或抑制蛋白质翻译以控制基因表达。显然,人类细胞中异常的miRNA表达将导致蛋白质-蛋白质相互作用网络(PPIN)发生严重变化,从而激活或灭活与各种疾病(尤其是致癌性)相关的某些途径。在这项研究中,我们首先系统地构建了针对17种癌症的miRNA调控的共表达蛋白-蛋白相互作用网络(CePPIN)。我们研究了CePPIN中蛋白质的拓扑参数和功能注释,尤其是那些miRNA靶标。我们发现,受更多miRNA调控的靶标在癌症的形成过程中倾向于发挥更重要的作用。我们从更系统的角度进一步阐明了PPIN中的miRNA调控规则。通过GO和KEGG途径分析,miRNA靶标涉及与细胞周期有关的各种细胞过程,例如细胞增殖,生长,分化等。通过Pfam分类,我们发现属于同一家族的miRNA倾向于具有靶标来自同一家族,展示了这些miRNA的协同功能。最后,对miR-519d和miR-21调节的子网络进行了案例研究以支持我们的发现。

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