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首页> 外文期刊>BMC Veterinary Research >Regulatory coordination of clustered microRNAs based on microRNA-transcription factor regulatory network
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Regulatory coordination of clustered microRNAs based on microRNA-transcription factor regulatory network

机译:基于microRNA转录因子调控网络的群集microRNA的调控协调

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BackgroundMicroRNA (miRNA) is a class of small RNAs of ~22nt which play essential roles in many crucial biological processes and numerous human diseases at post-transcriptional level of gene expression. It has been revealed that miRNA genes tend to be clustered, and the miRNAs organized into one cluster are usually transcribed coordinately. This implies a coordinated regulation mode exerted by clustered miRNAs. However, how the clustered miRNAs coordinate their regulations on large scale gene expression is still unclear.ResultsWe constructed the miRNA-transcription factor regulatory network that contains the interactions between transcription factors (TFs), miRNAs and non-TF protein-coding genes, and made a genome-wide study on the regulatory coordination of clustered miRNAs. We found that there are two types of miRNA clusters, i.e. homo-clusters that contain miRNAs of the same family and hetero-clusters that contain miRNAs of various families. In general, the homo-clustered as well as the hetero-clustered miRNAs both exhibit coordinated regulation since the miRNAs belonging to one cluster tend to be involved in the same network module, which performs a relatively isolated biological function. However, the homo-clustered miRNAs show a direct regulatory coordination that is realized by one-step regulation (i.e. the direct regulation of the coordinated targets), whereas the hetero-clustered miRNAs show an indirect regulatory coordination that is realized by a regulation comprising at least three steps (e.g. the regulation on the coordinated targets by a miRNA through a sequential action of two TFs). The direct and indirect regulation target different categories of genes, the former predominantly regulating genes involved in emergent responses, the latter targeting genes that imply long-term effects.ConclusionThe genomic clustering of miRNAs is closely related to the coordinated regulation in the gene regulatory network. The pattern of regulatory coordination is dependent on the composition of the miRNA cluster. The homo-clustered miRNAs mainly coordinate their regulation rapidly, while the hetero-clustered miRNAs exert control with a delay. The diverse pattern of regulatory coordination suggests distinct roles of the homo-clustered and the hetero-clustered miRNAs in biological processes.
机译:背景MicroRNA(miRNA)是一类约22nt的小RNA,在转录后的基因表达水平上,在许多关键的生物学过程和许多人类疾病中起着至关重要的作用。已经发现miRNA基因倾向于聚簇,并且组织成一个簇的miRNA通常被协调转录。这意味着簇状miRNA发挥了协调的调节模式。然而,簇状的miRNA如何协调其在大规模基因表达上的调控尚不清楚。结果我们构建了包含转录因子(TFs),miRNA和非TF蛋白编码基因之间相互作用的miRNA转录因子调控网络,并关于簇状miRNA调控协调的全基因组研究。我们发现存在两种类型的miRNA簇,即包含相同家族miRNA的同族簇和包含不同家族miRNA的异簇。通常,由于属于一个簇的miRNA倾向于参与同一网络模块,因此同聚的miRNA和杂聚的miRNA都表现出协调的调控,从而执行相对分离的生物学功能。然而,同源簇的miRNA显示出通过一步调控(即对协调靶标的直接调控)实现的直接调控,而异簇miRNA表现出了间接调控的调控,其中包括至少三个步骤(例如,miRNA通过两个TF的顺序作用对协同靶标进行调控)。直接和间接调控针对不同类别的基因,前者主要调控涉及紧急反应的基因,后者针对暗示长期效应的基因。结论miRNA的基因组聚类与基因调控网络中的协调调控密切相关。调控协调的模式取决于miRNA簇的组成。均聚的miRNA主要协调其调节,而异聚的miRNA则延迟发挥控制作用。监管协调的不同模式表明同族和异族miRNA在生物过程中的独特作用。

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