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The internal loops in the lower stem of primary microRNA transcripts facilitate single cleavage of human Microprocessor

机译:初级microRNA转录本下部茎中的内部环促进人类微处理器的单次切割

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摘要

The human Microprocessor complex cleaves primary microRNA (miRNA) transcripts (pri-miRNAs) to initiate miRNA synthesis. Microprocessor consists of DROSHA (an RNase III enzyme), and DGCR8. DROSHA contains two RNase III domains, RIIIDa and RIIIDb, which simultaneously cleave the 3p- and 5p-strands of pri-miRNAs, respectively. In this study, we show that the internal loop located in the lower stem of numerous pri-miRNAs selectively inhibits the cleavage of Microprocessor on their 3p-strand, thereby, facilitating the single cleavage on their 5p-strand. This single cleavage does not lead to the production of miRNA but instead, it downregulates miRNA expression. We also demonstrate that by manipulating the size of the internal loop in the lower stem of pri-miRNAs, we can alter the ratio of single-cut to double-cut products resulted from the catalysis of Microprocessor, thus changing miRNA production in the pri-miRNA processing assays and in human cells. Therefore, the oscillating level of the single cleavage suggests another way of regulation of miRNA expression and offers an alternative approach to miRNA knockdown.
机译:人类微处理器复合物裂解初级microRNA(miRNA)转录本(pri-miRNA)以启动miRNA合成。微处理器由DROSHA(一种RNase III酶)和DGCR8组成。 DROSHA包含两个RNase III结构域RIIIDa和RIIIDb,它们分别同时切割pri-miRNA的3p和5p链。在这项研究中,我们表明位于许多pri-miRNA下部茎中的内部环选择性地抑制了微处理器在其3p链上的切割,从而促进了对其5p链的单次切割。这种单一切割不会导致产生miRNA,而是会下调miRNA的表达。我们还证明,通过操纵pri-miRNA下部茎中内部环的大小,我们可以改变由微处理器催化产生的单切与双切产物的比例,从而改变pri-miRNA的miRNA产量。 miRNA加工测定法和人类细胞中的测定。因此,单次切割的振荡水平暗示了另一种调控miRNA表达的方式,并提供了另一种替代miRNA敲除的方法。

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