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配对限制的探索在C/D盒小核仁RNA-核糖体RNA双链体中确定了一个9个碱基对的核心。

Exploration of pairing constraints identifies a 9 base-pair core within box C/D snoRNA-rRNA duplexes.

作者信息

Chen Chun-Long, Perasso Roland, Qu Liang-Hu, Amar Laurence

机构信息

Key Laboratory of Gene Engineering of the Ministry of Education, State Key Laboratory for Biocontrol, Zhongshan University, Guangzhou, 510275, People's Republic of China.

出版信息

J Mol Biol. 2007 Jun 8;369(3):771-83. doi: 10.1016/j.jmb.2007.03.052. Epub 2007 Mar 24.

Abstract

2'-O-ribose methylation of eukaryotic ribosomal RNAs is guided by RNA duplexes consisting of rRNA and box C/D small nucleolar (sno)RNA sequences, the methylated sites invariably mapping five positions apart from the D box. Here we have analyzed the RNA duplex pairing constraints by investigating the features of 415 duplexes from the fungus, plant and animal kingdoms, and the evolution of those duplexes within the 124 sets they group into. The D-box upstream 1st and >or=15th positions consist of Watson-Crick base-pairs, G:U base-pairs and mismatched bases with ratios close to random assortments; these positions display single base differences in >60% of the RNA duplex sets. The D-box upstream 2nd to 11th positions have >90% Watson-Crick base-pairs; they display single base mutations with a U-shaped distribution of lower values of 0% and 1.6% at the methylated site 5th and 4th positions, and double compensatory mutations leading to new Watson-Crick base-pairs with an inverted U-shaped distribution of higher values at the 8th to 11th positions. Half of the single mutations at the 3rd to 11th positions resulted in G:U base-pairing, mainly through A-->G mutations in the rRNA strands and C-->T mutations in the snoRNA strands. Double compensatory mutations at the 3rd to 11th positions are extremely frequent, representing 36% of all mutations; they frequently arose from an A-->G mutation in the rRNA strands followed by a T-->C mutation in the snoRNA strands. Differences in the mutational pathways through which the rRNA and snoRNA strand evolved must be related to differences in the rRNA and snoRNA copy number and gene organization. Altogether these data identify the D-box upstream 3rd to 11th positions as box C/D snoRNA-rRNA duplex cores. The impact of the pairing constraints on the evolution of the 9 base-pair RNA duplex cores is discussed.

摘要

真核生物核糖体RNA的2'-O-核糖甲基化由包含rRNA和盒C/D小核仁(sno)RNA序列的RNA双链体引导,甲基化位点总是位于距D盒五个位置处。在这里,我们通过研究来自真菌、植物和动物界的415个双链体的特征以及它们所分组的124组内这些双链体的进化,分析了RNA双链体配对限制。D盒上游第1位和≥15位由沃森-克里克碱基对、G:U碱基对和错配碱基组成,其比例接近随机排列;这些位置在超过60%的RNA双链体组中显示单个碱基差异。D盒上游第2位至第11位有超过90%的沃森-克里克碱基对;它们在甲基化位点第5位和第4位显示单个碱基突变,其U形分布的较低值为0%和1.6%,以及导致新的沃森-克里克碱基对的双补偿突变,其在第8位至第11位具有倒U形分布的较高值。第3位至第11位的单个突变中有一半导致G:U碱基配对,主要是通过rRNA链中的A→G突变和snoRNA链中的C→T突变。第3位至第11位的双补偿突变极为频繁,占所有突变的36%;它们经常由rRNA链中的A→G突变随后snoRNA链中的T→C突变引起。rRNA和snoRNA链进化所通过的突变途径的差异一定与rRNA和snoRNA拷贝数及基因组织的差异有关。总之,这些数据将D盒上游第3位至第11位确定为盒C/D snoRNA-rRNA双链体核心。讨论了配对限制对9个碱基对RNA双链体核心进化的影响。

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