D-stem mutation in an essential tRNA increases translation speed at the cost of fidelity.

IF 3.7 2区 生物学 Q1 GENETICS & HEREDITY PLoS Genetics Pub Date : 2025-02-04 eCollection Date: 2025-02-01 DOI:10.1371/journal.pgen.1011569
Madison N Schrock, Krishna Parsawar, Kelly T Hughes, Fabienne F V Chevance
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Abstract

The efficiency with which aminoacyl-tRNA and GTP-bound translation elongation factor EF-Tu recognizes the A-site codon of the ribosome is dependent on codons and tRNA species present in the polypeptide (P) and exit (E) codon sites. To understand how codon context affects the efficiency of codon recognition by tRNA-bound EF-Tu, a genetic system was developed to select for fast translation through slow-translating codon combinations. Selection for fast translation through the slow-translated UCA-UAC pair, flanked by histidine codons, resulted in the isolation of an A25G base substitution mutant in the D-stem of an essential tRNA LeuZ, which recognizes the UUA and UUG leucine codons. The LeuZ(A25G) substitution allowed for faster translation through all codon pairs tested that included the UCA codon. Insertion of leucine at the UCA serine codon was enhanced in the presence of LeuZ(A25G) tRNA. This work, taken in context with the Hirsh UGA nonsense suppressor G24A mutation in TrpT tRNA, provides genetic evidence that the post-GTP hydrolysis proofreading step by elongation factor Tu may be controlled by structural interactions in the hinge region of tRNA species. Our results support a model in which the tRNA bending component of the accommodation step in mRNA translation allows EF Tu time to enhance its ability to differentiate tRNA interactions between cognate and near-cognate mRNA codons.

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一种重要 tRNA 的 D 干突变提高了翻译速度,但却牺牲了翻译的保真度。
氨基酰基tRNA和gtp结合的翻译延伸因子EF-Tu识别核糖体a位点密码子的效率取决于存在于多肽(P)和出口(E)密码子位点的密码子和tRNA种类。为了了解密码子上下文如何影响trna结合的EF-Tu识别密码子的效率,开发了一个遗传系统,通过慢翻译密码子组合选择快速翻译。通过选择慢翻译的UCA-UAC对(两侧是组氨酸密码子)进行快速翻译,在必需tRNA LeuZ的d -茎中分离出A25G碱基替换突变体,该突变体识别UUA和UUG亮氨酸密码子。LeuZ(A25G)替代可以更快地翻译所有测试的密码子对,包括UCA密码子。LeuZ(A25G) tRNA的存在增强了亮氨酸在UCA丝氨酸密码子上的插入。在Hirsh UGA无义抑制基因G24A突变TrpT tRNA的背景下,这项工作提供了遗传证据,证明伸长因子Tu对gtp后水解的校正步骤可能受tRNA物种铰链区域的结构相互作用控制。我们的研究结果支持一个模型,在这个模型中,mRNA翻译中调节步骤的tRNA弯曲成分允许EF Tu有时间增强其区分同源和近同源mRNA密码子之间tRNA相互作用的能力。
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PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
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期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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