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Computational analysis of nascent peptides that induce ribosome stalling and their proteomic distribution in Saccharomyces cerevisiae

机译:诱导核糖体停滞的新生肽及其在酿酒酵母中的蛋白质组学分布的计算分析

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Interactions between the ribosomal exit tunnel and the nascent peptide can affect translation elongation rates. While previous studies have already demonstrated the feasibility of such interactions, little is known about the nature of the stalling peptide sequences and their distribution in the proteome. Here we ask which peptide sequences tend to occupy the tunnel of stalled ribosomes and how they are distributed in the proteome. Using computational analysis of ribosome profiling data from S. cerevisiae, we identified for the first time dozens of short stalling peptide sequences and studied their statistical properties. We found that short peptide sequences associated with ribosome stalling tend significantly to be either over-or underrepresented in the proteome. We then showed that the stalling interactions may occur at different positions along the length of the tunnel, prominently close to the P-site. Our findings throw light on the determinants of nascent peptide-mediated ribosome stalling during translation elongation and support the novel conjecture that mRNA translation affects the proteomic distribution of short peptide sequences.
机译:核糖体出口隧道与新生肽之间的相互作用会影响翻译伸长率。虽然先前的研究已经证明了这种相互作用的可行性,但关于停滞肽序列的性质及其在蛋白质组中的分布很少。在这里,我们要求哪种肽序列倾向于占据停滞核糖体的隧道以及它们如何分布在蛋白质组中。利用来自S.Cerevisiae的核糖体分析数据的计算分析,我们鉴定了第一次短暂停滞肽序列,并研究了它们的统计性质。我们发现与核糖体停滞相关的短肽序列趋于在蛋白质组中的过度或不足。然后,我们表明,停滞相互作用可能在沿着隧道的长度的不同位置发生,突出地接近P型位点。我们的研究结果在翻译伸长率期间抛出了新生肽介导的核糖体的决定因素,并支持新的猜测mRNA平移影响短肽序列的蛋白质组学分布。

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