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Proteome-wide measurement of non-canonical bacterial mistranslation by quantitative mass spectrometry of protein modifications

机译:通过蛋白质修饰的定量质谱法对非规范性细菌误译进行蛋白质组范围的测量

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摘要

The genetic code is virtually universal in biology and was likely established before the advent of cellular life. The extent to which mistranslation occurs is poorly understood and presents a fundamental question in basic research and production of recombinant proteins. Here we used shotgun proteomics combined with unbiased protein modification analysis to quantitatively analyze in vivo mistranslation in an E. coli strain with a defect in the editing mechanism of leucyl-tRNA synthetase. We detected the misincorporation of a non-proteinogenic amino acid norvaline on 10% of all measured leucine residues under microaerobic conditions and revealed preferential deployment of a tRNALeu(CAG) isoacceptor during norvaline misincorporation. The strain with the norvalylated proteome demonstrated a substantial reduction in cell fitness under both prolonged aerobic and microaerobic cultivation. Unlike norvaline, isoleucine did not substitute for leucine even under harsh error-prone conditions. Our study introduces shotgun proteomics as a powerful tool in quantitative analysis of mistranslation.
机译:遗传密码在生物学上实际上是通用的,并且很可能在细胞生命出现之前就已经建立了。发生错误翻译的程度了解甚少,并且在重组蛋白的基础研究和生产中提出了一个基本问题。在这里,我们使用shot弹枪蛋白质组学与无偏蛋白修饰分析相结合,定量分析了具有亮氨酰tRNA合成酶编辑机制缺陷的大肠杆菌菌株的体内错译。我们在微需氧条件下在所有测得的亮氨酸残基上检测了10%的非蛋白氨基酸正缬氨酸的错误掺入,并揭示了在正缬氨酸错误掺入过程中优先部署tRNA (CAG)同工受体。在长时间需氧培养和微需氧培养下,带有去甲酰基化蛋白质组的菌株均显示出细胞适应性的显着降低。与正缬氨酸不同,即使在苛刻的容易出错的条件下,异亮氨酸也不能替代亮氨酸。我们的研究将shot弹枪蛋白质组学引入为错误翻译定量分析的强大工具。

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