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MDRL lncRNA Regulates the Processing of miR-484 Primary Transcript by Targeting miR-361

机译:MDRL lncRNA通过靶向miR-361调节miR-484原始转录物的加工

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摘要

Long noncoding RNAs (lncRNAs) are emerging as new players in gene regulation, but whether lncRNAs operate in the processing of miRNA primary transcript is unclear. Also, whether lncRNAs are involved in the regulation of the mitochondrial network remains to be elucidated. Here, we report that a long noncoding RNA, named mitochondrial dynamic related lncRNA (MDRL), affects the processing of miR-484 primary transcript in nucleus and regulates the mitochondrial network by targeting miR-361 and miR-484. The results showed that miR-361 that predominantly located in nucleus can directly bind to primary transcript of miR-484 (pri-miR-484) and prevent its processing by Drosha into pre-miR-484. miR-361 is able to regulate mitochondrial fission and apoptosis by regulating miR-484 levels. In exploring the underlying molecular mechanism by which miR-361 is regulated, we identified MDRL and demonstrated that it could directly bind to miR-361 and downregulate its expression levels, which promotes the processing of pri-miR-484. MDRL inhibits mitochondrial fission and apoptosis by downregulating miR-361, which in turn relieves inhibition of miR-484 processing by miR-361. Our present study reveals a novel regulating model of mitochondrial fission program which is composed of MDRL, miR-361 and miR-484. Our work not only expands the function of the lncRNA pathway in gene regulation but also establishes a new mechanism for controlling miRNA expression.
机译:长的非编码RNA(lncRNA)逐渐成为基因调控的新参与者,但是尚不清楚lncRNA是否在miRNA初级转录本的加工中发挥作用。而且,lncRNAs是否参与线粒体网络的调控仍有待阐明。在这里,我们报告一个长的非编码RNA,称为线粒体动态相关的lncRNA(MDRL),影响miR-484初级转录本在核中的加工,并通过靶向miR-361和miR-484来调节线粒体网络。结果表明,主要位于细胞核中的miR-361可以直接与miR-484的初级转录本(pri-miR-484)结合,并阻止其被Drosha加工成pre-miR-484。 miR-361能够通过调节miR-484的水平来调节线粒体的分裂和凋亡。在探索调控miR-361的潜在分子机制时,我们鉴定了MDRL并证明它可以直接与miR-361结合并下调其表达水平,从而促进pri-miR-484的加工。 MDRL通过下调miR-361抑制线粒体分裂和细胞凋亡,从而减轻了miR-361对miR-484加工的抑制作用。我们目前的研究揭示了由MDRL,miR-361和miR-484组成的线粒体裂变程序的新型调控模型。我们的工作不仅扩展了lncRNA途径在基因调控中的功能,而且建立了控制miRNA表达的新机制。

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