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酿酒酵母前体U3A小核仁RNA的二级结构及其对剪接效率的影响。

Secondary structure of the yeast Saccharomyces cerevisiae pre-U3A snoRNA and its implication for splicing efficiency.

作者信息

Mougin A, Grégoire A, Banroques J, Ségault V, Fournier R, Brulé F, Chevrier-Miller M, Branlant C

机构信息

Laboratoire d'Enzymologie et de Génie Génétique, URA CNRS 457, Université de Nancy I, Faculté des Sciences, Vandoeuvre-lès-Nancy, France.

出版信息

RNA. 1996 Nov;2(11):1079-93.

Abstract

The Saccharomyces cerevisiae U3 snoRNA genes contain long spliceosomal introns with noncanonical branch site sequences. By using chemical and enzymatic methods to probe the RNA secondary structure and site-directed mutagenesis, we established the complete secondary structure of the U3A snoRNA precursor. This is the first determination of the complete secondary structure of an RNA spliced in a spliceosome. The peculiar cruciform structure of the U3A snoRNA 3'-terminal region is formed in the precursor RNA and the conserved Boxes B and C are accessible for binding the U3 snoRNP proteins. The intron forms a highly folded structure with a long central stem-loop structure that brings the 5' box and the branch site together. This is in agreement with the idea that secondary structure interactions are necessary for efficient splicing of long introns in yeast. The 3' splice site is in a bulged loop and the branch site sequence is single-stranded. Surprisingly, the 5' splice site is involved in a 6-base pair interaction. We used in vitro splicing experiments to show that, despite a noncanonical branch site sequence and a base paired 5' splice site, transcripts that mimic the authentic pre-U3A snoRNA are spliced very efficiently in vitro. Sequestering the 5' splice site in a more stable structure had a negative effect on splicing, which was partially compensated by converting the branch site sequence into a canonical sequence. Analysis of spliceosomal complex formation revealed a cumulative negative effect of a base pair interaction at the 5' splice site and of a deviation to the consensus sequence at the branch site on the efficiency of spliceosome formation in vitro.

摘要

酿酒酵母U3小核仁RNA基因含有具有非典型分支位点序列的长剪接体内含子。通过使用化学和酶促方法探测RNA二级结构以及定点诱变,我们确定了U3A小核仁RNA前体的完整二级结构。这是首次确定在剪接体中剪接的RNA的完整二级结构。U3A小核仁RNA 3'末端区域独特的十字形结构在前体RNA中形成,保守的B盒和C盒可用于结合U3小核仁核糖核蛋白。内含子形成高度折叠的结构,具有长的中央茎环结构,将5'盒和分支位点聚集在一起。这与二级结构相互作用对于酵母中长内含子的有效剪接是必需的这一观点一致。3'剪接位点位于一个凸起的环中,分支位点序列是单链的。令人惊讶的是,5'剪接位点参与了一个6碱基对的相互作用。我们使用体外剪接实验表明,尽管分支位点序列非典型且5'剪接位点碱基配对,但模拟真实U3A小核仁RNA前体的转录本在体外能非常有效地剪接。将5'剪接位点隔离在更稳定的结构中对剪接有负面影响,通过将分支位点序列转化为典型序列可部分补偿这种影响。对剪接体复合物形成的分析揭示了5'剪接位点的碱基对相互作用以及分支位点与共有序列的偏差对体外剪接体形成效率的累积负面影响。

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