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Wobbling Forth and Drifting Back: The Evolutionary History and Impact of Bacterial tRNA Modifications

机译:摇摆不定和漂移:细菌tRNA修饰的进化历史和影响

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摘要

Along with tRNAs, enzymes that modify anticodon bases are a key aspect of translation across the tree of life. tRNA modifications extend wobble pairing, allowing specific (“target”) tRNAs to recognize multiple codons and cover for other (“nontarget”) tRNAs, often improving translation efficiency and accuracy. However, the detailed evolutionary history and impact of tRNA modifying enzymes has not been analyzed. Using ancestral reconstruction of five tRNA modifications across 1093 bacteria, we show that most modifications were ancestral to eubacteria, but were repeatedly lost in many lineages. Most modification losses coincided with evolutionary shifts in nontarget tRNAs, often driven by increased bias in genomic GC and associated codon use, or by genome reduction. In turn, the loss of tRNA modifications stabilized otherwise highly dynamic tRNA gene repertoires. Our work thus traces the complex history of bacterial tRNA modifications, providing the first clear evidence for their role in the evolution of bacterial translation.
机译:与tRNA一起,修饰反密码子碱基的酶是整个生命之树翻译的关键方面。 tRNA修饰扩展了摆动配对,从而允许特定的(“靶标”)tRNA识别多个密码子并覆盖其他(“非靶标”)tRNA,通常可提高翻译效率和准确性。但是,尚未分析tRNA修饰酶的详细进化史和影响。使用跨1093个细菌的五个tRNA修饰的祖先重建,我们显示大多数修饰是真细菌的祖先,但在许多谱系中反复丢失。大多数修饰损失与非靶标tRNA的进化变化相吻合,通常是由基因组GC偏倚的增加和相关密码子的使用或基因组的减少引起的。反过来,tRNA修饰的丧失稳定了原本高度动态的tRNA基因库。因此,我们的工作追溯了细菌tRNA修饰的复杂历史,为它们在细菌翻译进化中的作用提供了第一个明确证据。

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