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首页> 外文期刊>Journal of bacteriology >Functional Significance of an Evolutionarily Conserved Alanine (GCA) Resume Codon in tmRNA in Escherichia coli
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Functional Significance of an Evolutionarily Conserved Alanine (GCA) Resume Codon in tmRNA in Escherichia coli

机译:大肠杆菌tmRNA中进化保守的丙氨酸(GCA)简历密码子的功能意义

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Occasionally, ribosomes stall on mRNAs prior to the completion of the polypeptide chain. In Escherichia coli and other eubacteria, tmRNA-mediated trans-translation is a major mechanism that recycles the stalled ribosomes. The tmRNA possesses a tRNA-like domain and a short mRNA region encoding a short peptide (ANDENYALAA in E. coli) followed by a termination codon. The first amino acid (Ala) of this peptide encoded by the resume codon (GCN) is highly conserved in tmRNAs in different species. However, reasons for the high evolutionary conservation of the resume codon identity have remained unclear. In this study, we show that changing the E. coli tmRNA resume codon to other efficiently translatable codons retains efficient functioning of the tmRNA. However, when the resume codon was replaced with the low-usage codons, its function was adversely affected. Interestingly, expression of tRNAs decoding the low-usage codon from plasmid-borne gene copies restored efficient utilization of tmRNA. We discuss why in E. coli, the GCA (Ala) is one of the best codons and why all codons in the short mRNA of the tmRNA are decoded by the abundant tRNAs.
机译:有时,核糖体在多肽链完成之前停滞在mRNA上。在大肠杆菌和其他真细菌中,tmRNA介导的 trans -翻译是回收停滞的核糖体的主要机制。所述tmRNA具有tRNA样结构域和编码短肽(在大肠杆菌中为ANDENYALAA)的短mRNA区,随后是终止密码子。由恢复密码子(GCN)编码的该肽的第一个氨基酸(Ala)在不同物种的tmRNA中高度保守。然而,恢复密码子身份高度进化保守的原因仍不清楚。在这项研究中,我们表明将大肠杆菌tmRNA恢复密码子更改为其他有效可翻译的密码子可以保留tmRNA的有效功能。但是,当恢复密码替换为低使用密码时,其功能受到不利影响。有趣的是,从质粒携带的基因拷贝中解码低使用密码子的tRNA的表达恢复了tmRNA的有效利用。我们讨论了为什么在大肠杆菌中,GCA(Ala)是最好的密码子之一,以及为什么tmRNA短mRNA中的所有密码子都被丰富的tRNA解码。

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