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3' end processing of mouse histone pre-mRNA: evidence for additional base-pairing between U7 snRNA and pre-mRNA.

机译:小鼠组蛋白pre-mRNA的3'末端加工:U7 snRNA和pre-mRNA之间存在额外碱基配对的证据。

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摘要

We have analysed the extent of base-pairing interactions between spacer sequences of histone pre-mRNA and U7 snRNA present in the trans-acting U7 snRNP and their importance for histone RNA 3' end processing in vitro. For the efficiently processed mouse H4-12 gene, a computer analysis revealed that additional base pairs could be formed with U7 RNA outside of the previously recognised spacer element (stem II). One complementarity (stem III) is located more 3' and involves nucleotides from the very 5' end of U7 RNA. The other, more 5' located complementarity (stem I) involves nucleotides of the Sm binding site of U7 RNA, a part known to interact with snRNP structural proteins. These potential stem structures are separated from each other by short internal loops of unpaired nucleotides. Mutational analyses of the pre-mRNA indicate that stems II and III are equally important for interaction with the U7 snRNP and for processing, whereas mutations in stem I have moderate effects on processing efficiency, but do not impair complex formation with the U7 snRNP. Thus nucleotides near the processing site may be important for processing, but do not contribute to the assembly of an active complex by forming a stem I structure. The importance of stem III was confirmed by the ability of a complementary mutation in U7 RNA to suppress a stem III mutation in a complementation assay using Xenopus laevis oocytes. The main role of the factor(s) binding to the upstream hairpin loop is to stabilise the U7-pre-mRNA complex. This was shown by either stabilising (by mutation) or destabilising (by increased temperature) the U7-pre-mRNA base-pairing under conditions where hairpin factor binding was either allowed or prevented (by mutation or competition). The hairpin dependence of processing was found to be inversely related to the strength of the U7-pre-mRNA interaction.
机译:我们已经分析了反式U7 snRNP中存在的组蛋白前mRNA和U7 snRNA的间隔序列之间的碱基配对相互作用的程度,以及它们对体外组蛋白RNA 3'末端加工的重要性。对于有效处理的小鼠H4-12基因,计算机分析表明,可以用U7 RNA在先前识别的间隔区元件(茎II)之外形成其他碱基对。一个互补性(茎III)位于3'端,涉及U7 RNA 5'端的核苷酸。另一个位于5'端的互补性(茎I)涉及U7 RNA的Sm结合位点的核苷酸,该部分已知与snRNP结构蛋白相互作用。这些潜在的茎结构通过未配对核苷酸的短内环彼此分开。前mRNA的突变分析表明,茎II和茎III对于与U7 snRNP的相互作用和加工同样重要,而茎I的突变对加工效率有中等影响,但不会损害与U7 snRNP的复合物形成。因此,加工位点附近的核苷酸对于加工可能很重要,但不会通过形成茎I结构而有助于活性复合物的组装。在非洲爪蟾卵母细胞的互补测定中,U7 RNA的互补突变具有抑制茎III突变的能力,从而证实了茎III的重要性。与上游发夹环结合的因子的主要作用是稳定U7-pre-mRNA复合物。在允许或阻止发夹因子结合的条件下(通过突变或竞争),通过稳定(通过突变)或通过稳定(通过升高温度)U7-pre-mRNA碱基配对来表明这一点。发现加工的发夹依赖性与U7-pre-mRNA相互作用的强度成反比。

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