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Quality control despite mistranslation caused by an ambiguous genetic code

机译:尽管由于遗传密码不明确导致翻译错误但仍进行质量控制

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摘要

A high level of accuracy during protein synthesis is considered essential for life. Aminoacyl-tRNA synthetases (aaRSs) translate the genetic code by ensuring the correct pairing of amino acids with their cognate tRNAs. Because some aaRSs also produce misacylated aminoacyl-tRNA (aa-tRNA) in vivo, we addressed the question of protein quality within the context of missense suppression by Cys-tRNAPro, Ser-tRNAThr, Glu-tRNAGln, and Asp-tRNAAsn. Suppression of an active-site missense mutation leads to a mixture of inactive mutant protein (from translation with correctly acylated aa-tRNA) and active enzyme indistinguishable from the wild-type protein (from translation with misacylated aa-tRNA). Here, we provide genetic and biochemical evidence that under selective pressure, Escherichia coli not only tolerates the presence of misacylated aa-tRNA, but can even require it for growth. Furthermore, by using mass spectrometry of a reporter protein not subject to selection, we show that E. coli can survive the ambiguous genetic code imposed by misacylated aa-tRNA tolerating up to 10% of mismade protein. The editing function of aaRSs to hydrolyze misacylated aa-tRNA is not essential for survival, and the EF-Tu barrier against misacylated aa-tRNA is not absolute. Rather, E. coli copes with mistranslation by triggering the heat shock response that stimulates nonoptimized polypeptides to achieve a native conformation or to be degraded. In this way, E. coli ensures the presence of sufficient functional protein albeit at a considerable energetic cost.
机译:蛋白质合成过程中的高精确度被认为对生命至关重要。氨酰基-tRNA合成酶(aaRSs)通过确保氨基酸与其同源tRNA正确配对来翻译遗传密码。由于某些aaRS还在体内产生错误酰化的氨酰基tRNA(aa-tRNA),因此我们在Cys-tRNA Pro ,Ser-tRNA Thr抑制错义的背景下解决了蛋白质质量问题,Glu-tRNA Gln 和Asp-tRNA Asn 。活性位点错义突变的抑制导致无活性的突变蛋白(由正确酰化的aa-tRNA的翻译产生)和与野生型蛋白没有区别的活性酶(由错误的酰化的aa-tRNA的翻译产生)的混合物。在这里,我们提供了遗传和生化证据,表明在选择性压力下,大肠杆菌不仅可以耐受错误酰化的aa-tRNA的存在,甚至可以使其生长。此外,通过使用不受选择的报道蛋白的质谱分析,我们显示大肠杆菌可以幸免于由错误酰化的aa-tRNA所耐受的高达10%的错误蛋白质的遗传密码。 aaRSs水解错误酰化的aa-tRNA的编辑功能对于生存不是必需的,而且针对错误酰化的aa-tRNA的EF-Tu屏障也不是绝对的。相反,大肠杆菌通过触发热激反应来应对错误翻译,该热激反应刺激未优化的多肽以达到天然构象或被降解。以此方式,大肠杆菌以足够的能量消耗确保了足够的功能蛋白的存在。

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