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Susceptibility of the human pathways graphs to fragmentation by small sets of microRNAs

机译:人类途径图易受小分子微小片段断裂的影响

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Motivation: MicroRNAs (miRNAs) are short sequences that negatively regulate gene expression. The current understanding of miRNA and their corresponding mRNA targets is primarily based on prediction programs. This study addresses the potential of a coordinated action of miRNAs to manipulate the human pathways. Specifically, we investigate the effectiveness of disrupting the topology of human pathway graphs through a regulation by miRNAs.Results: From a set of miRNA candidates that is associated with a pathway, an exhaustive search for all possible doubles and triplets (coined miR-Duo, miR-Trios) is performed. The impact of each miR-combination on the connectivity of the pathway graph was quantified. About 170 human pathways were tested, and the miR-Duos and miR-Trios were scored for their ability to disrupt these pathway graphs. We show that 75% of all pathways are effectively disconnected by a small number of pathway-specific miR-Trios. Only 15% of the human pathways are resistant to fragmentation by miR-Duos or miR-Trios. Significantly, the combination of the most effective miR-Trios is unique. Thus, a specific regulation of a pathway within the cell is guaranteed. The impact of the selected miR-Duo/Trios on various diseases is discussed.Conclusions: The methodology presented shows that the synthesis of the topology of a network with a detailed understanding of the miRNAs' regulation is useful in exposing critical nodes of the network. We propose the miR-Trio approach as a basis for rationally designed perturbation experiments.
机译:动机:MicroRNA(miRNA)是对基因表达产生负调控的短序列。目前对miRNA及其相应的mRNA靶点的了解主要基于预测程序。这项研究探讨了miRNA协同作用操纵人类途径的潜力。具体来说,我们研究了通过miRNA调控破坏人类途径图拓扑的有效性。结果:从与途径相关的一组miRNA候选物中,详尽搜索了所有可能的双倍体和三联体(硬币状miR-Duo, miR-Trios)。量化每种miR组合对通路图连接性的影响。测试了约170条人类通路,并对miR-Duos和miR-Trios破坏这些通路图的能力进行了评分。我们表明,所有途径的75%被少数途径特异性的miR-Trios有效地断开了连接。人类途径中只有15%对miR-Duos或miR-Trios的片段化具有抗性。重要的是,最有效的miR-Trios的组合是独特的。因此,保证了细胞内途径的特定调节。结论:所提出的方法表明,网络拓扑结构的合成对miRNA的调控有详细的了解,对揭示网络的关键节点很有用。我们提出了miR-Trio方法作为合理设计扰动实验的基础。

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