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Role of pri-miRNA tertiary structure in miR-17~92 miRNA biogenesis

机译:pri-miRNA三级结构在miR-17〜92 miRNA生物发生中的作用

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摘要

MicroRNAs (miRNAs) regulate gene expression in a variety of biological pathways such as development and tumorigenesis. miRNAs are initially expressed as long primary transcripts (pri-miRNAs) that undergo sequential processing by Drosha and then Dicer to yield mature miRNAs. miR-17~92 is a miRNA cluster that encodes 6 miRNAs and while it is essential for development it also has reported oncogenic activity. To date, the role of RNA structure in miRNA biogenesis has only been considered in terms of the secondary structural elements required for processing of pri-miRNAs by Drosha. Here we report that the miR-17~92 cluster has a compact globular tertiary structure where miRNAs internalized within the core of the folded structure are processed less efficiently than miRNAs on the surface of the structure. Increased miR- 92 expression resulting from disruption of the compact miR-17~92 structure results in increased repression of integrin α5 mRNA, a known target of miR-92a. In summary, we describe the first example of pri-miRNA structure modulating differential expression of constituent miRNAs.
机译:微小RNA(miRNA)在多种生物学途径(例如发育和肿瘤发生)中调节基因表达。 miRNA最初表示为长的初级转录本(pri-miRNA),先由Drosha再经Dicer依次加工以产生成熟的miRNA。 miR-17〜92是编码6个miRNA的miRNA簇,虽然对发育至关重要,但也有致癌作用。迄今为止,仅根据Drosha处理pri-miRNA所需的二级结构元件考虑了RNA结构在miRNA生物发生中的作用。在这里,我们报道miR-17〜92簇具有紧密的球状三级结构,其中折叠结构的核心内部内在的miRNA比结构表面上的miRNA加工效率低。致密miR-17〜92结构的破坏导致miR-92表达增加,导致整联蛋白α5mRNA(miR-92a的已知靶标)的阻遏作用增强。总而言之,我们描述了pri-miRNA结构调节成分miRNA差异表达的第一个例子。

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