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Saturation of recognition elements blocks evolution of new tRNA identities

机译:识别元件的饱和阻止了新的tRNA身份的进化

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摘要

Understanding the principles that led to the current complexity of the genetic code is a central question in evolution. Expansion of the genetic code required the selection of new transfer RNAs (tRNAs) with specific recognition signals that allowed them to be matured, modified, aminoacylated, and processed by the ribosome without compromising the fidelity or efficiency of protein synthesis. We show that saturation of recognition signals blocks the emergence of new tRNA identities and that the rate of nucleotide substitutions in tRNAs is higher in species with fewer tRNA genes. We propose that the growth of the genetic code stalled because a limit was reached in the number of identity elements that can be effectively used in the tRNA structure.
机译:了解导致当前遗传密码复杂性的原理是进化中的中心问题。扩展遗传密码需要选择具有特定识别信号的新转移RNA(tRNA),使它们能够被核糖体成熟,修饰,氨酰化和加工,而不会影响蛋白质合成的保真度或效率。我们表明,识别信号的饱和会阻止新的tRNA身份的出现,并且在tRNA基因较少的物种中,tRNA中的核苷酸取代率更高。我们提出遗传密码的增长停滞了,因为在tRNA结构中可以有效使用的身份元件数量达到了极限。

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