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Ribosomal RNAs are tolerant toward genetic insertions: evolutionary origin of the expansion segments

机译:核糖体RNA耐受基因插入:扩展片段的进化起源

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摘要

Ribosomal RNAs (rRNAs), assisted by ribosomal proteins, form the basic structure of the ribosome, and play critical roles in protein synthesis. Compared to prokaryotic ribosomes, eukaryotic ribosomes contain elongated rRNAs with several expansion segments and larger numbers of ribosomal proteins. To investigate architectural evolution and functional capability of rRNAs, we employed a Tn5 transposon system to develop a systematic genetic insertion of an RNA segment 31 nt in length into Escherichia coli rRNAs. From the plasmid library harboring a single rRNA operon containing random insertions, we isolated surviving clones bearing rRNAs with functional insertions that enabled rescue of the E. coli strain (Δ7rrn) in which all chromosomal rRNA operons were depleted. We identified 51 sites with functional insertions, 16 sites in 16S rRNA and 35 sites in 23S rRNA, revealing the architecture of E. coli rRNAs to be substantially flexible. Most of the insertion sites show clear tendency to coincide with the regions of the expansion segments found in eukaryotic rRNAs, implying that eukaryotic rRNAs evolved from prokaryotic rRNAs suffering genetic insertions and selections.
机译:核糖体RNA(rRNA)在核糖体蛋白的辅助下形成核糖体的基本结构,并在蛋白质合成中起关键作用。与原核生物核糖体相比,真核生物核糖体包含具有多个扩展段和大量核糖体蛋白的细长rRNA。为了研究rRNA的结构进化和功能能力,我们采用了Tn5转座子系统来开发将系统性遗传插入长度为31 nt的RNA片段插入大肠杆菌rRNA中的方法。从具有单个包含随机插入的rRNA操纵子的质粒文库中,我们分离了带有rRNA且具有功能插入的幸存克隆,这些克隆具有能够挽救所有染色体rRNA操纵子都被耗尽的大肠杆菌菌株(Δ7rrn)。我们鉴定出具有功能性插入的51个位点,16S rRNA中的16个位点和23S rRNA中的35个位点,揭示了大肠杆菌rRNA的结构具有很大的灵活性。大多数插入位点显示出与在真核rRNA中发现的扩增片段区域一致的明显趋势,这意味着真核rRNA从遭受基因插入和选择的原核rRNA进化而来。

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