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TRBP ensures efficient Dicer processing of precursor microRNA in RNA-crowded environments

机译:TRBP确保在RNA拥挤的环境中对Dicer前体microRNA进行有效的Dicer处理

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The RNA-binding protein TRBP is a central component of the Dicer complex. Despite a decade of biochemical and structural studies, the essential functionality of TRBP in microRNA (miRNA) biogenesis remains unknown. Here we show that TRBP is an integral cofactor for time-efficient Dicer processing in RNA-crowded environments. We competed for Dicer processing of pre-miRNA with a large amount of cellular RNA species and found that Dicer-TRBP, but not Dicer alone, remains resilient. To apprehend the mechanism of this substrate selectivity, we use single-molecule fluorescence. The real-time observation reveals that TRBP acts as a gatekeeper, precluding Dicer from engaging with pre-miRNA-like substrates. TRBP acquires the selectivity using the PAZ domain of Dicer, whereas Dicer moderates the RNA-binding affinity of TRBP for fast turnover. This coordinated action between TRBP and Dicer accomplishes an efficient way of discarding pre-miRNA-like substrates.
机译:RNA结合蛋白TRBP是Dicer复合物的重要组成部分。尽管进行了十多年的生化和结构研究,TRBP在microRNA(miRNA)生物发生中的基本功能仍然未知。在这里,我们证明TRBP是RNA拥挤环境中省时的Dicer处理中不可或缺的辅助因子。我们与大量细胞RNA种类竞争Dicer对pre-miRNA的加工,发现Dicer-TRBP(而非单独的Dicer)仍然具有弹性。要了解这种底物选择性的机制,我们使用单分子荧光。实时观察表明TRBP充当了网守,阻止了Dicer与类似miRNA的前体结合。 TRBP使用Dicer的PAZ结构域获得了选择性,而Dicer降低了TRBP的RNA结合亲和力,可实现快速周转。 TRBP和Dicer之间的这种协同作用完成了丢弃pre-miRNA样底物的有效方法。

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