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时机至关重要:统一密码子翻译率和新生蛋白质组行为。

Timing is everything: unifying codon translation rates and nascent proteome behavior.

机构信息

Department of Chemistry, Pennsylvania State University , University Park, Pennsylvania 16802, United States.

出版信息

J Am Chem Soc. 2014 Dec 31;136(52):17892-8. doi: 10.1021/ja510082j. Epub 2014 Dec 19.

Abstract

Experiments have demonstrated that changing the rate at which the ribosome translates a codon position in an mRNA molecule's open reading frame can alter the behavior of the newly synthesized protein. That is, codon translation rates can govern nascent proteome behavior. We emphasize that this phenomenon is a manifestation of the nonequilibrium nature of cotranslational processes, and as such, there exist theoretical tools that offer a potential means to quantitatively predict the influence of codon translation rates on the broad spectrum of nascent protein behaviors including cotranslational folding, aggregation, and translocation. We provide a review of the experimental evidence for the impact that codon translation rates can have, followed by a discussion of theoretical methods that can describe this phenomenon. The development and application of these tools are likely to provide fundamental insights into protein maturation and homeostasis, codon usage bias in organisms, the origins of translation related diseases, and new rational design methods for biotechnology and biopharmaceutical applications.

摘要

实验表明,改变核糖体在 mRNA 分子开放阅读框中翻译密码子位置的速度可以改变新合成蛋白质的行为。也就是说,密码子翻译速度可以控制新生蛋白质组的行为。我们强调,这种现象是共翻译过程非平衡性质的一种表现,因此,存在一些理论工具,为定量预测密码子翻译速度对包括共翻译折叠、聚集和易位在内的新生蛋白质广泛行为的影响提供了一种潜在的方法。我们回顾了密码子翻译速度可能产生影响的实验证据,接着讨论了可以描述这一现象的理论方法。这些工具的开发和应用很可能为蛋白质成熟和动态平衡、生物体中密码子使用偏好、与翻译相关疾病的起源以及生物技术和生物制药应用的新理性设计方法提供基本的见解。

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