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Kinetic modelling indicates that fast-translating codons can coordinate cotranslational protein folding by avoiding misfolded intermediates

机译:动力学建模表明,快速翻译的密码子可通过避免错误折叠的中间体来协调翻译蛋白的折叠

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摘要

It has been observed for several proteins that slowing down the rate at which individual codons are translated can increase their probability of cotranslational protein folding, while speeding up codon translation can decrease it. Here we investigate whether or not this inverse relationship between translation speed and the cotranslational folding probability is a general phenomenon or if other scenarios are possible. We first derive chemical kinetic equations that relate individual codon translation rates to the probability that a domain will fold, populate an intermediate or misfold, and examine the cotranslational folding scenarios that are possible within these models. We find that speeding up codon translation through misfolding-prone segments can, in some cases, increase the folding probability of a domain immediately before the nascent protein is released from the ribosome and decrease its chances of misfolding. Thus, for some proteins fast-translating codons could be as important as slow-translating codons in coordinating cotranslational protein folding.
机译:已经观察到对于几种蛋白质而言,减慢单个密码子的翻译速度可以增加其共翻译蛋白质折叠的可能性,而加快密码子翻译的速度可以降低它。在这里,我们调查翻译速度和共翻译折叠概率之间的这种逆向关系是否是普遍现象,或者其他情况是否可能。我们首先导出化学动力学方程,将各个密码子翻译速率与域折叠,填充中间或错误折叠的可能性相关联,然后研究在这些模型中可能发生的共翻译折叠情况。我们发现,在某些情况下,通过易错折叠的片段加快密码子翻译可以在刚从核糖体释放出新生蛋白质之前增加结构域的折叠概率,并减少其错折叠的机会。因此,对于某些蛋白质,在协调共翻译蛋白质折叠中,快速翻译密码子可能与缓慢翻译密码子一样重要。

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