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Bringing order to translation: the contributions of transfer RNA anticodon-domain modifications

机译:翻译的秩序:转移RNA反密码子域修饰的贡献

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摘要

The biosynthesis of RNA includes its post-transcriptional modifications, and the crucial functions of these modifications have supported their conservation within all three kingdoms. For example, the modifications located within or adjacent to the anticodon of the transfer RNA (tRNA) enhance the accuracy of codon binding, maintain the translational reading frame and enable translocation of the tRNA from the A-site to the P-site of the ribosome. Although composed of different chemistries, the more than 70 known modifications of tRNA have in common their ability to reduce conformational dynamics, and to bring order to the internal loops and hairpin structures of RNA. The modified nucleosides of the anticodon domain of tRNA restrict its dynamics and shape its architecture; therefore, the need of the ribosome to constrain or remodel each tRNA to fit the decoding site is diminished. This concept reduces an entropic penalty for translation and provides a physicochemical basis for the conservation of RNA modifications in general.
机译:RNA的生物合成包括其转录后修饰,这些修饰的关键功能支持了它们在所有三个王国中的保守。例如,位于转移RNA(tRNA)反密码子内部或附近的修饰可增强密码子结合的准确性,维持翻译阅读框架并使tRNA从核糖体的A位点转移到P位点。尽管由不同的化学组成,但已知的tRNA的70多种修饰具有减少构象动力学,使RNA的内部环和发夹结构秩序化的能力。 tRNA反密码子结构域的修饰核苷限制了其动力学并影响了其结构。因此,减少了核糖体约束或重塑每个tRNA以适合解码位点的需要。该概念减少了翻译的熵损失,并为总体上保守RNA修饰提供了理化基础。

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