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How short RNAs impact the human ribonuclease Dicer activity: putative regulatory feedback-loops and other RNA-mediated mechanisms controlling microRNA processing

机译:短RNA如何影响人类核糖核酸酶Dicer的活性:推定的调节反馈环和其他控制microRNA加工的RNA介导机制

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Ribonuclease Dicer plays a pivotal role in RNA interference pathways by processing long double-stranded RNAs and single-stranded hairpin RNA precursors into small interfering RNAs (siRNAs) and microRNAs (miRNAs), respectively. While details of Dicer regulation by a variety of proteins are being elucidated, less is known about non-protein factors, e.g. RNA molecules, that may influence this enzyme's activity. Therefore, we decided to investigate the question of whether the RNA molecules can function not only as Dicer substrates but also as its regulators. Our previous in vitro studies indicated that the activity of human Dicer can be influenced by short RNA molecules that either bind to Dicer or interact with its substrates, or both. Those studies were carried out with commercial Dicer preparations. Nevertheless, such preparations are usually not homogeneous enough to carry out more detailed RNA-binding studies. Therefore, we have established our own system for the production of human Dicer in insect cells. In this manuscript, we characterize the RNA-binding and RNA-cleavage properties of the obtained preparation. We demonstrate that Dicer can efficiently bind single-stranded RNAs that are longer than similar to 20-nucleotides. Consequently, we revisit possible scenarios of Dicer regulation by single-stranded RNA species ranging from similar to 10- to similar to 60-nucleotides, in the context of their binding to this enzyme. Finally, we show that siRNA/miRNA-sized RNAs may affect miRNA production either by binding to Dicer or by participating in regulatory feedback-loops. Altogether, our studies suggest a broad regulatory role of short RNAs in Dicer functioning.
机译:核糖核酸酶切酶酶通过将长双链RNA和单链发夹RNA前体分别加工成小干扰RNA(siRNA)和microRNA(miRNA),在RNA干扰途径中起着关键作用。虽然阐明了各种蛋白质对Dicer的调控细节,但对非蛋白质因子的了解较少。 RNA分子,可能会影响该酶的活性。因此,我们决定研究RNA分子是否不仅可以作为Dicer底物而且还可以作为其调节物起作用。我们以前的体外研究表明,与Dicer结合或与其底物相互作用或二者兼有的短RNA分子可影响人类Dicer的活性。这些研究是用商业切丁机制剂进行的。然而,此类制剂通常不够均匀,无法进行更详细的RNA结合研究。因此,我们建立了自己的系统来在昆虫细胞中生产人类Dicer。在此手稿中,我们描述了所得制剂的RNA结合和RNA切割特性。我们证明Dicer可以有效地结合比20个核苷酸更长的单链RNA。因此,在它们与该酶结合的背景下,我们将重新探讨Dicer调控单链RNA的可能性,其范围从相似的10个核苷酸到相似的60个核苷酸。最后,我们表明siRNA / miRNA大小的RNA可能通过与Dicer结合或参与调节性反馈环而影响miRNA的产生。总之,我们的研究表明,短RNA在Dicer功能中具有广泛的调节作用。

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