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首页> 外文期刊>RNA >Base-pairing interactions between substrate RNA and H/ACA guide RNA modulate the kinetics of pseudouridylation, but not the affinity of substrate binding by H/ACA small nucleolar ribonucleoproteins
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Base-pairing interactions between substrate RNA and H/ACA guide RNA modulate the kinetics of pseudouridylation, but not the affinity of substrate binding by H/ACA small nucleolar ribonucleoproteins

机译:底物RNA和H / ACA导向RNA之间的基对相互作用调节假亚胺酰亚胺化的动力学,但不是H / ACA小核核糖核酸蛋白的底物结合的亲和力

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摘要

H/ACA small nucleolar ribonucleoproteins (snoRNPs) pseudouridylate RNA in eukaryotes and archaea. They target many RNAs site-specifically through base-pairing interactions between H/ACA guide and substrate RNA. Besides ribosomal RNA (rRNA) and small nuclear RNA (snRNA), H/ACA snoRNPs are thought to also modify messenger RNA (mRNA) with potential impacts on gene expression. However, the base pairing between known target RNAs and H/ACA guide RNAs varies widely in nature, and therefore the rules governing substrate RNA selection are still not fully understood. To provide quantitative insight into substrate RNA recognition, we systematically altered the sequence of a substrate RNA target by the Saccharomyces cerevisiae H/ACA guide RNA snR34. Time courses measuring pseudouridine formation revealed a gradual decrease in the initial velocity of pseudouridylation upon reducing the number of base pairs between substrate and guide RNA. Changing or inserting nucleotides close to the target uridine severely impairs pseudouridine formation. Interestingly, filter binding experiments show that all substrate RNA variants bind to H/ACA snoRNPs with nanomolar affinity. Next, we showed that binding of inactive, near-cognate RNAs to H/ACA snoRNPs does not inhibit their activity for cognate RNAs, presumably because near-cognate RNAs dissociate rapidly. We discuss that the modulation of initial velocities by the base-pairing strength might affect the order and efficiency of pseudouridylation in rRNA during ribosome biogenesis. Moreover, the binding of H/ACA snoRNPs to near-cognate RNAs may be a mechanism to search for cognate target sites. Together, our data provide critical information to aid in the prediction of productive H/ACA guide-substrate RNA pairs.
机译:H / ACA小核仁核糖核蛋白(Snornps)假染蛋白RNA在真核生物和古痤疮中。它们靶向许多RNA位点 - 特别是通过H / ACA引导和衬底RNA之间的碱基配对相互作用。除核糖体RNA(RRNA)和小核RNA(SNRNA)外,H / ACA Snornps还被认为还在对所述信使RNA(mRNA)进行潜在影响对基因表达。然而,已知靶RNA和H / ACA指南RNA之间的基础配对本质上很广泛,因此仍然不完全理解控制衬底RNA选择的规则。为了提供对基材RNA识别的定量洞察力,我们通过酿酒酵母H / ACA引导RNA SNR34系统地改变了底物RNA靶的序列。测量假尿苷形成的时间课程显示在减少基材和引导RNA之间的碱基对数时初始速度的初始减小。改变或插入接近靶尿苷的核苷酸严重损害假尿苷形成。有趣的是,过滤器结合实验表明,所有底物RNA变体都与纳米摩尔亲和力结合H / ACA Snornps。接下来,我们表明,无活性的结合,近对同源RNA至H / ACA SnaRORP不抑制它们对同源RNA的活性,可能是因为近同位素RNA快速解散。我们讨论了基础配对强度的初始速度的调节可能影响核糖体生物发生期间rRNA中假约亚化的顺序和效率。此外,H / ACA SnaRORP对接近同源RNA的结合可以是寻找同源目标位点的机制。我们的数据在一起提供关键信息,以帮助预测生产性H / ACA导衬基板RNA对。

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