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RNA editing of the microRNA-151 precursor blocks cleavage by the Dicer–TRBP complex

机译:对microRNA-151前体的RNA编辑可阻断Dicer-TRBP复合物的切割

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摘要

MicroRNAs (miRNAs) mediate translational repression or degradation of their target messenger RNAs by RNA interference (RNAi). The primary transcripts of miRNA genes (pri-miRNAs) are sequentially processed by the nuclear Drosha–DGCR8 complex to approximately 60–70 nucleotide (nt) intermediates (pre-miRNAs) and then by the cytoplasmic Dicer–TRBP complex to approximately 20–22 nt mature miRNAs. Certain pri-miRNAs are subject to RNA editing that converts adenosine to inosine (A → I RNA editing); however, the fate of edited pri-miRNAs is mostly unknown. Here, we provide evidence that RNA editing of pri-miR-151 results in complete blockage of its cleavage by Dicer and accumulation of edited pre-miR-151 RNAs. Our results indicate that A → I conversion at two specific positions of the pre-miRNA foldback structure can affect its interaction with the Dicer–TRBP complex, showing a new regulatory role of A → I RNA editing in miRNA biogenesis.
机译:MicroRNA(miRNA)通过RNA干扰(RNAi)介导其目标信使RNA的翻译抑制或降解。 miRNA基因的初级转录本(pri-miRNA)被核Drosha-DGCR8复合物依次加工成大约60-70个核苷酸(nt)中间体(pre-miRNA),然后被细胞质Dicer-TRBP复合物加工成大约20-22 nt成熟的miRNA。某些pri-miRNA需经过RNA编辑,以将腺苷转化为肌苷(A→I RNA编辑)。但是,编辑后的pri-miRNA的命运大多未知。在这里,我们提供了证据,证明pri-miR-151的RNA编辑会导致Dicer切割酶的完全阻断和编辑过的pre-miR-151 RNA的积累。我们的结果表明,在miRNA前折叠结构的两个特定位置上的A→I转化可影响其与Dicer–TRBP复合物的相互作用,显示了A→I RNA编辑在miRNA生物发生中的新调节作用。

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