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A Role for Codon Order in Translation Dynamics

机译:密码子顺序在翻译动力学中的作用

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摘要

The genetic code is degenerate. Each amino acid is encoded by up to six synonymous codons; the choice between these codons influences gene expression. Here, we show that in coding sequences, once a particular codon has been used, subsequent occurrences of the same amino acid do not use codons randomly, but favor codons that use the same tRNA. The effect is pronounced in rapidly induced genes, involves both frequent and rare codons and diminishes only slowly as a function of the distance between subsequent synonymous codons. Furthermore, we found that in S. cerevisiae codon correlation accelerates translation relative to the translation of synonymous yet anticorrelated sequences. The data suggest that tRNA diffusion away from the ribosome is slower than translation, and that some tRNA channeling takes place at the ribosome. They also establish that the dynamics of translation leave a significant signature at the level of the genome.
机译:遗传密码是简并的。每个氨基酸最多由六个同义密码子编码;这些密码子之间的选择会影响基因表达。在这里,我们显示出在编码序列中,一旦使用了特定的密码子,随后出现的相同氨基酸不会随机使用密码子,而是会支持使用相同tRNA的密码子。这种作用在快速诱导的基因中很明显,涉及频繁的和稀有的密码子,并且仅根据随后的同义密码子之间的距离而缓慢减小。此外,我们发现在酿酒酵母中,密码子相关性相对于同义但反相关序列的翻译而言,可加速翻译。数据表明,tRNA从核糖体扩散的速度比翻译慢,并且某些tRNA通道在核糖体发生。他们还确定了翻译的动力学过程在基因组水平上留下了重要的印记。

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