首页> 美国卫生研究院文献>Nucleic Acids Research >N1-methyl-pseudouridine in mRNA enhances translation through eIF2α-dependent and independent mechanisms by increasing ribosome density
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N1-methyl-pseudouridine in mRNA enhances translation through eIF2α-dependent and independent mechanisms by increasing ribosome density

机译:通过增加核糖体密度mRNA中的N1-甲基-伪杜里定通过eIF2α依赖性和独立机制增强翻译

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摘要

Certain chemical modifications confer increased stability and low immunogenicity to in vitro transcribed mRNAs, thereby facilitating expression of therapeutically important proteins. Here, we demonstrate that N1-methyl-pseudouridine (N1mΨ) outperforms several other nucleoside modifications and their combinations in terms of translation capacity. Through extensive analysis of various modified transcripts in cell-free translation systems, we deconvolute the different components of the effect on protein expression independent of mRNA stability mechanisms. We show that in addition to turning off the immune/eIF2α phosphorylation-dependent inhibition of translation, the incorporated N1mΨ nucleotides dramatically alter the dynamics of the translation process by increasing ribosome pausing and density on the mRNA. Our results indicate that the increased ribosome loading of modified mRNAs renders them more permissive for initiation by favoring either ribosome recycling on the same mRNA or de novo ribosome recruitment.
机译:某些化学修饰赋予体外转录的mRNA更高的稳定性和较低的免疫原性,从而促进了治疗上重要蛋白的表达。在这里,我们证明了N1-甲基-伪尿苷(N1m-)在翻译能力方面胜过其他几种核苷修饰及其组合。通过在无细胞翻译系统中对各种修饰的转录本进行广泛的分析,我们对卷积对蛋白质表达的影响的不同成分进行了去卷积,而与mRNA稳定机制无关。我们表明,除了关闭免疫/eIF2α磷酸化依赖性翻译的抑制作用之外,掺入的N1mΨ核苷酸还通过增加核糖体暂停和mRNA的密度来显着改变翻译过程的动态。我们的结果表明,通过支持相同mRNA上的核糖体回收或从头重新募集核糖体,修饰的mRNA的核糖体负载增加使它们更易于起始。

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