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Assay of both activities of the bifunctional tRNA-modifying enzyme MnmC reveals a kinetic basis for selective full modification of cmnm5s2U to mnm5s2U

机译:双功能tRNA修饰酶MnmC的两种活性的测定揭示了将cmnm5s2U选择性完全修饰为mnm5s2U的动力学基础

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摘要

Transfer RNA (tRNA) contains a number of complex ‘hypermodified’ nucleosides that are essential for a number of genetic processes. Intermediate forms of these nucleosides are rarely found in tRNA despite the fact that modification is not generally a complete process. We propose that the modification machinery is tuned into an efficient ‘assembly line’ that performs the modification steps at similar, or sequentially increasing, rates to avoid build-up of possibly deleterious intermediates. To investigate this concept, we measured steady-state kinetics for the final two steps of the biosynthesis of the mnm5s2U nucleoside in Escherichia coli tRNAGlu, which are both catalysed by the bifunctional MnmC enzyme. High-performance liquid chromatography-based assays using selectively under-modified tRNA substrates gave a Km value of 600 nM and kcat 0.34 s−1 for the first step, and Km 70 nM and kcat 0.31 s−1 for the second step. These values show that the second reaction occurs faster than the first reaction, or at a similar rate at very high substrate concentrations. This result indicates that the enzyme is kinetically tuned to produce fully modified mnm5(s2)U while avoiding build-up of the nm5(s2)U intermediate. The assay method developed here represents a general approach for the comparative analysis of tRNA-modifying enzymes.
机译:转移RNA(tRNA)包含许多复杂的“超修饰”核苷,这些核苷对许多遗传过程至关重要。尽管修饰通常不是一个完整的过程,但在tRNA中很少发现这些核苷的中间形式。我们建议将修改机制调整为有效的“装配线”,以相似或相继增加的速率执行修改步骤,以避免可能有害的中间体的堆积。为了研究这个概念,我们测量了大肠杆菌tRNAGlu中mnm5s2U核苷生物合成的最后两个步骤的稳态动力学,这两个步骤均由双功能MnmC酶催化。基于高效液相色谱的分析方法使用选择性未修饰的tRNA底物,第一步的Km值为600 nM,kcat 0.34 s-1,第二步的Km值为70 nM和kcat 0.31 s-1。这些值表明第二反应比第一反应更快发生,或者在非常高的底物浓度下以相似的速率发生。该结果表明该酶在动力学上被调谐以产生完全修饰的mnm5(s2)U,同时避免了nm5(s2)U中间体的积累。本文开发的测定方法代表了比较分析tRNA修饰酶的通用方法。

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    Pearson, David; Carell, Thomas;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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