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Impact of methylations of m(2)G966/m(5)C967 in 16S rRNA on bacterial fitness and translation initiation

机译:m(2)G966 / m(5)C967在16S rRNA中甲基化对细菌适应性和翻译起始的影响

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The functional centers of the ribosome in all organisms contain ribosomal RNA (rRNA) modifications, which are introduced by specialized enzymes and come at an energy cost for the cell. Surprisingly, none of the modifications tested so far was essential for growth and hence the functional role of modifications is largely unknown. Here, we show that the methyl groups of nucleosides m2G966 and m5C967 of 16S rRNA in Escherichia coli are important for bacterial fitness. In vitro analysis of all phases of translation suggests that the m2G966/m5C967 modifications are dispensable for elongation, termination and ribosome recycling. Rather, the modifications modulate the early stages of initiation by stabilizing the binding of fMet-tRNAfMet to the 30S pre-initiation complex prior to start-codon recognition. We propose that the m2G966 and m5C967 modifications help shaping the bacterial proteome, most likely by fine-tuning the rates that determine the fate of a given messenger RNA (mRNA) at early checkpoints of mRNA selection.
机译:在所有生物中,核糖体的功能中心都包含核糖体RNA(rRNA)修饰,这些修饰是由专门的酶引入的,并耗费了细胞的能源成本。出人意料的是,到目前为止测试的修饰都不是生长所必需的,因此修饰的功能作用尚不清楚。在这里,我们显示了大肠杆菌中16S rRNA的核苷m2G966和m5C967的甲基对于细菌适应性很重要。对翻译所有阶段的体外分析表明,m2G966 / m5C967修饰对于延长,终止和核糖体回收是必不可少的。相反,修饰通过稳定fMet-tRNAfMet与起始密码子识别之前的30S预起始复合物的结合来调节起始的早期阶段。我们提出,m2G966和m5C967修饰有助于塑造细菌蛋白质组,最可能的方法是微调确定mRNA筛选早期检查点上给定信使RNA(mRNA)命运的速率。

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