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Changes in global translation elongation or initiation rates shape the proteome via the Kozak sequence

机译:整体翻译延伸率或起始速率的变化通过Kozak序列影响蛋白质组

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摘要

The sequence context surrounding the AUG start codon of an open reading frame - the ‘Kozak sequence’ - affects the probability with which a scanning ribosome will recognize the start codon and start translating there. A significant number of transcripts in animals such as Drosophila contain weak Kozak sequences. This is predicted to cause constitutively low translation of these transcripts. We study here the additional possibility that these mRNAs have weak Kozak sequences to allow for the regulation of their translation in response to stress or altered cellular signaling. We find that transcripts with weak Kozak sequences are less sensitive to drops in global elongation rates and more sensitive to drops in global initiation rates compared to transcripts with strong Kozak sequences. This provides a mechanism by which changes in these global translation parameters differentially affect different pools of mRNAs depending on their Kozak sequence, thereby shaping the proteome. Interestingly, mRNAs with weak Kozak sequences are enriched for genes involved in neurobiology, suggesting that they constitute a functional group that can be translationally co-regulated.
机译:围绕开放阅读框AUG起始密码子的序列上下文-“ Kozak序列”会影响扫描核糖体识别起始密码子并开始翻译的可能性。动物(如果蝇)中的大量转录物含有弱的Kozak序列。预计这会导致这些转录本的组成性低翻译。我们在这里研究了这些mRNA具有弱的Kozak序列的其他可能性,以允许其响应压力或改变的细胞信号转导而调节其翻译。我们发现,与具有强Kozak序列的转录本相比,具有弱Kozak序列的转录本对总体延伸率下降的敏感性较低,而对总体起始速率的下降更敏感。这提供了一种机制,通过这些机制,这些全局翻译参数的变化根据其Kozak序列差异地影响不同的mRNA池,从而形成蛋白质组。有趣的是,具有弱Kozak序列的mRNA富含涉及神经生物学的基因,表明它们构成了一个可以翻译共调控的功能基团。

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