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Coregulation of transcription factors and microRNAs in human transcriptional regulatory network

机译:人体转录监管网络中转录因子和微大稻草的核心

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Background: MicroRNAs (miRNAs) are small RNA molecules that regulate gene expression at the post-transcriptional level. Recent studies have suggested that miRNAs and transcription factors are primary metazoan gene regulators; however, the crosstalk between them still remains unclear. Methods: We proposed a novel model utilizing functional annotation information to identify significant coregulation between transcriptional and post-transcriptional layers. Based on this model, function-enriched coregulation relationships were discovered and combined into different kinds of functional coregulation networks. Results: We found that miRNAs may engage in a wider diversity of biological processes by coordinating with transcription factors, and this kind of cross-layer coregulation may have higher specificity than intra-layer coregulation. In addition, the coregulation networks reveal several types of network motifs, including feed-forward loops and massive upstream crosstalk. Finally, the expression patterns of these coregulation pairs in normal and tumour tissues were analyzed. Different coregulation types show unique expression correlation trends. More importantly, the disruption of coregulation may be associated with cancers. Conclusion: Our findings elucidate the combinatorial and cooperative properties of transcription factors and miRNAs regulation, and we proposes that the coordinated regulation may play an important role in many biological processes.
机译:背景:microRNA(miRNA)是调节转录后水平的基因表达的小RNA分子。最近的研究表明miRNA和转录因子是原发性甲基基因调节因子;然而,它们之间的串扰仍然不清楚。方法:我们提出了一种利用功能注释信息的新型模型,以识别转录和转录后层之间的重要内核。基于该模型,发现了功能丰富的共度关系,并将其组合成不同种类的功能性核心网络。结果:我们发现MIRNA可以通过与转录因子协调来从更广泛的生物过程中的生物过程,并且这种横向COREGURACURACURACURY可能具有比层内核心的特异性更高。此外,CoreGulation Networks揭示了几种类型的网络图案,包括前馈环和巨大上游串扰。最后,分析了正常和肿瘤组织中这些CoreGulation对的表达模式。不同的CoreGulation类型显示出独特的表达相关趋势。更重要的是,CoreGulation的破坏可能与癌症相关。结论:我们的调查结果阐明了转录因子和MiRNA规则的组合和合作性质,我们建议协调监管可能在许多生物过程中发挥重要作用。

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