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Novel mRNA-specific effects of ribosome drop-off on translation rate and polysome profile

机译:核糖体脱落对翻译速率和多核糖体谱的新型mRNA特异性影响

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摘要

The well established phenomenon of ribosome drop-off plays crucial roles in translational accuracy and nutrient starvation responses during protein translation. When cells are under stress conditions, such as amino acid starvation or aminoacyl-tRNA depletion due to a high level of recombinant protein expression, ribosome drop-off can substantially affect the efficiency of protein expression. Here we introduce a mathematical model that describes the effects of ribosome drop-off on the ribosome density along the mRNA and on the concomitant protein synthesis rate. Our results show that ribosome premature termination may lead to non-intuitive ribosome density profiles, such as a ribosome density which increases from the 5’ to the 3’ end. Importantly, the model predicts that the effects of ribosome drop-off on the translation rate are mRNA-specific, and we quantify their resilience to drop-off, showing that the mRNAs which present ribosome queues are much less affected by ribosome drop-off than those which do not. Moreover, among those mRNAs that do not present ribosome queues, resilience to drop-off correlates positively with the elongation rate, so that sequences using fast codons are expected to be less affected by ribosome drop-off. This result is consistent with a genome-wide analysis of S. cerevisiae, which reveals that under favourable growth conditions mRNAs coding for proteins involved in the translation machinery, known to be highly codon biased and using preferentially fast codons, are highly resilient to ribosome drop-off. Moreover, in physiological conditions, the translation rate of mRNAs coding for regulatory, stress-related proteins, is less resilient to ribosome drop-off. This model therefore allows analysis of variations in the translational efficiency of individual mRNAs by accounting for the full range of known ribosome behaviours, as well as explaining mRNA-specific variations in ribosome density emerging from ribosome profiling studies.
机译:完善的核糖体脱落现象在蛋白质翻译过程中对翻译准确性和营养饥饿反应具有至关重要的作用。当细胞处于应激条件下(例如由于高水平的重组蛋白表达而导致氨基酸饥饿或氨酰基-tRNA消耗)时,核糖体的脱落会严重影响蛋白表达的效率。在这里,我们介绍了一个数学模型,该模型描述了核糖体脱落对沿mRNA的核糖体密度以及伴随的蛋白质合成率的影响。我们的结果表明,核糖体过早终止可能导致不直观的核糖体密度分布,例如从5'到3'末端增加的核糖体密度。重要的是,该模型预测核糖体脱落对翻译速率的影响是mRNA特异性的,并且我们定量了其对脱落的回弹力,表明存在核糖体队列的mRNA受核糖体脱落的影响要小于那些没有。此外,在那些不存在核糖体排队的mRNA中,脱落的弹性与伸长率呈正相关,因此,预期使用快速密码子的序列受核糖体脱落的影响较小。该结果与酿酒酵母的全基因组分析一致,该分析揭示了在有利的生长条件下,编码翻译机制中涉及的蛋白质的mRNA编码高度密码子偏向并优先使用快速密码子,对核糖体下降具有高度的适应性。 -关。此外,在生理条件下,编码调节性,应激相关蛋白的mRNA的翻译速率对核糖体脱落的适应性较差。因此,该模型可以通过考虑已知核糖体行为的全部范围来分析单个mRNA的翻译效率变化,并解释核糖体谱研究中出现的核糖体密度中的mRNA特异性变化。

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