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Imp3 unfolds stem structures in pre-rRNA and U3 snoRNA to form a duplex essential for small subunit processing

机译:Imp3展开pre-rRNA和U3 snoRNA中的茎结构,形成小亚基加工必不可少的双链体

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Eukaryotic ribosome biogenesis requires rapid hybridization between the U3 snoRNA and the pre-rRNA to direct cleavages at the A0, A1, and A2 sites in pre-rRNA that liberate the small subunit precursor. The bases involved in hybridization of one of the three duplexes that U3 makes with pre-rRNA, designated the U3-18S duplex, are buried in conserved structures: box A/A′ stem-loop in U3 snoRNA and helix 1 (H1) in the 18S region of the pre-rRNA. These conserved structures must be unfolded to permit the necessary hybridization. Previously, we reported that Imp3 and Imp4 promote U3-18S hybridization in vitro, but the mechanism by which these proteins facilitate U3-18S duplex formation remained unclear. Here, we directly addressed this question by probing base accessibility with chemical modification and backbone accessibility with ribonuclease activity of U3 and pre-rRNA fragments that mimic the secondary structure observed in vivo. Our results demonstrate that U3-18S hybridization requires only Imp3. Binding to each RNA by Imp3 provides sufficient energy to unfold both the 18S H1 and the U3 box A/A′ stem structures. The Imp3 unfolding activity also increases accessibility at the U3-dependent A0 and A1 sites, perhaps signaling cleavage at these sites to generate the 5′ mature end of 18S. Imp4 destabilizes the U3-18S duplex to aid U3 release, thus differentiating the roles of these proteins. Protein-dependent unfolding of these structures may serve as a switch to block U3-pre-rRNA interactions until recruitment of Imp3, thereby preventing premature and inaccurate U3-dependent prer-RNA cleavage and folding events in eukaryotic ribosome biogenesis.
机译:真核生物核糖体的生物发生需要U3 snoRNA和pre-rRNA之间快速杂交,以指导在pre-rRNA中A0,A1和A2位点的切割,从而释放小亚基前体。 U3与pre-rRNA形成的三个双链体之一的杂交所涉及的碱基被称为U3-18S双链体,被埋在保守的结构中:U3 snoRNA中的框A / A'茎环和螺旋中的螺旋1(H1) rRNA前体的18S区域。这些保守的结构必须展开以允许必要的杂交。以前,我们报道了Imp3和Imp4在体外促进U3-18S杂交,但是这些蛋白促进U3-18S双链体形成的机制仍不清楚。在这里,我们通过探索具有化学修饰的碱基可及性和具有模拟体内观察到的二级结构的U3和pre-rRNA片段的核糖核酸酶活性的骨架可及性,直接解决了这个问题。我们的结果表明,U3-18S杂交仅需要Imp3。 Imp3与每个RNA的结合提供了足够的能量来展开18S H1和U3盒A / A'茎结构。 Imp3的展开活性也增加了在依赖U3的A0和A1位点的可及性,可能是在这些位点发出信号以生成18S的5'成熟末端。 Imp4使U3-18S双链体不稳定,以帮助U3释放,从而区分这些蛋白质的作用。这些结构的蛋白质依赖性解折叠可作为阻止U3-pre-rRNA相互作用直至募集Imp3的开关,从而防止真核核糖体生物发生中过早且不准确的U3依赖性prer-RNA裂解和折叠事件。

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