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Molecular Evolution of Aminoacyl tRNA Synthetase Proteins in the Early History of Life

机译:生命早期氨酰基tRNa合成酶蛋白的分子进化

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摘要

Aminoacyl-tRNA synthetases (aaRS) consist of several families of functionally conserved proteins essential for translation and protein synthesis. Like nearly all components of the translation machinery, most aaRS families are universally distributed across cellular life, being inherited from the time of the Last Universal Common Ancestor (LUCA). However, unlike the rest of the translation machinery, aaRS have undergone numerous ancient horizontal gene transfers, with several independent events detected between domains, and some possibly involving lineages diverging before the time of LUCA. These transfers reveal the complexity of molecular evolution at this early time, and the chimeric nature of genomes within cells that gave rise to the major domains. Additionally, given the role of these protein families in defining the amino acids used for protein synthesis, sequence reconstruction of their pre-LUCA ancestors can reveal the evolutionary processes at work in the origin of the genetic code. In particular, sequence reconstructions of the paralog ancestors of isoleucyl- and valyl- RS provide strong empirical evidence that at least for this divergence, the genetic code did not co-evolve with the aaRSs; rather, both amino acids were already part of the genetic code before their cognate aaRSs diverged from their common ancestor. The implications of this observation for the early evolution of RNA-directed protein biosynthesis are discussed.
机译:氨酰基-tRNA合成酶(aaRS)由翻译和蛋白质合成必不可少的功能保守的蛋白质家族组成。就像翻译机器的几乎所有组件一样,大多数aRS家族都是从上次通用祖先(LUCA)时代继承而来的,在整个细胞生命中普遍分布。但是,与其他翻译机制不同,aaRS已经经历了许多古老的水平基因转移,在域之间检测到了几个独立的事件,并且其中一些可能涉及在LUCA之前发生的谱系分化。这些转移揭示了这一早期分子进化的复杂性,以及细胞内基因组的嵌合性质,从而产生了主要结构域。此外,鉴于这些蛋白质家族在定义用于蛋白质合成的氨基酸中的作用,其LUCA前祖先的序列重建可以揭示遗传密码起源中的进化过程。特别地,异亮氨酰-和缬氨酰-RS的旁系同源祖先的序列重建提供了有力的经验证据,即至少对于这种差异,遗传密码没有与aaRS共同进化。相反,在同源aaRS与共同祖先分离之前,这两种氨基酸已经是遗传密码的一部分。讨论了该观察结果对RNA定向蛋白生物合成的早期发展的影响。

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