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The role of RNA structure in the interaction of U1A protein with U1 hairpin II RNA

机译:RNA结构在U1A蛋白与U1发夹II RNA相互作用中的作用

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摘要

The N-terminal RNA Recognition Motif (RRM1) of the spliceosomal protein U1A interacting with its target U1 hairpin II (U1hpII) has been used as a paradigm for RRM-containing proteins interacting with their RNA targets. U1A binds to U1hpII via direct interactions with a 7-nucleotide (nt) consensus binding sequence at the 5′ end of a 10-nt loop, and via hydrogen bonds with the closing C–G base pair at the top of the RNA stem. Using surface plasmon resonance (Biacore), we have examined the role of structural features of U1hpII in binding to U1A RRM1. Mutational analysis of the closing base pair suggests it plays a minor role in binding and mainly prevents “breathing” of the loop. Lengthening the stem and nontarget part of the loop suggests that the increased negative charge of the RNA might slightly aid association. However, this is offset by an increase in dissociation, which may be caused by attraction of the RRM to nontarget parts of the RNA. Studies of a single stranded target and RNAs with untethered loops indicate that structure is not very relevant for association but is important for complex stability. In particular, breaking the link between the stem and the 5′ side of the loop greatly increases complex dissociation, presumably by hindering simultaneous contacts between the RRM and stem and loop nucleotides. While binding of U1A to a single stranded target is much weaker than to U1hpII, it occurs with nanomolar affinity, supporting recent evidence that binding of unstructured RNA by U1A has physiological significance.
机译:与目标U1发夹II(U1hpII)相互作用的剪接蛋白U1A的N端RNA识别基序(RRM1​​)已用作含RRM蛋白质与其RNA靶标相互作用的范例。 U1A通过与10-nt环的5'端的7个核苷酸(nt)共有结合序列直接相互作用,并通过与RNA茎顶部的闭合C–G碱基对形成氢键,从而与U1hpII结合。使用表面等离振子共振(Biacore),我们检查了U1hpII的结构特征在结合U1A RRM1中的作用。对闭合碱基对的突变分析表明,它在结合中起次要作用,主要防止环的“呼吸”。延长环的茎和非靶标部分表明,增加的RNA负电荷可能会稍微有助于缔合。但是,这可以通过解离的增加来抵消,这可能是由于RRM吸引RNA的非目标部分所致。对单链靶标和具有无束缚环的RNA的研究表明,结构与缔合不是很相关,但对复杂的稳定性很重要。特别是,断开茎与环的5'侧之间的连接会大大增加复杂的解离,大概是因为阻碍了RRM与茎与环核苷酸之间的同时接触。虽然U1A与单链靶标的结合比与U1hpII的结合弱得多,但它具有纳摩尔摩尔亲和力,支持了最近的证据表明U1A与非结构RNA的结合具有生理学意义。

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