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Genome-wide survey of tissue-specific microRNA and transcription factor regulatory networks in 12 tissues

机译:全基因组范围内对12种组织中的特异性microRNA和转录因子调控网络的调查

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摘要

Tissue-specific miRNAs (TS miRNA) specifically expressed in particular tissues play an important role in tissue identity, differentiation and function. However, transcription factor (TF) and TS miRNA regulatory networks across multiple tissues have not been systematically studied. Here, we manually extracted 116 TS miRNAs and systematically investigated the regulatory network of TF-TS miRNA in 12 human tissues. We identified 2,347 TF-TS miRNA regulatory relations and revealed that most TF binding sites tend to enrich close to the transcription start site of TS miRNAs. Furthermore, we found TS miRNAs were regulated widely by non-tissue specific TFs and the tissue-specific expression level of TF have a close relationship with TF-genes regulation. Finally, we describe TSmiR (), a novel and web-searchable database that houses interaction maps of TF-TS miRNA in 12 tissues. Taken together, these observations provide a new suggestion to better understand the regulatory network and mechanisms of TF-TS miRNAs underlying different tissues.
机译:在特定组织中特异性表达的组织特异性miRNA(TS miRNA)在组织身份,分化和功能中起重要作用。但是,尚未对跨多个组织的转录因子(TF)和TS miRNA调控网络进行系统研究。在这里,我们手动提取了116种TS miRNA,并系统地研究了TF-TS miRNA在12种人体组织中的调控网络。我们确定了2,347个TF-TS miRNA调控关系,并揭示了大多数TF结合位点倾向于富集到TS miRNA的转录起始位点附近。此外,我们发现TS miRNA受非组织特异性TF广泛调控,并且TF的组织特异性表达水平与TF基因的调控密切相关。最后,我们描述了TSmiR(),这是一个新颖的且可在网络上搜索的数据库,其中包含TF-TS miRNA在12个组织中的相互作用图。综上所述,这些发现为更好地了解不同组织下的TF-TS miRNA的调控网络和机制提供了新的建议。

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