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转运核糖核酸中的甲基化核苷及转运核糖核酸甲基转移酶

Methylated nucleosides in tRNA and tRNA methyltransferases.

作者信息

Hori Hiroyuki

机构信息

Department of Materials Science and Biotechnology, Applied Chemistry, Graduate School of Science and Engineering, Ehime University Matsuyama, Japan.

出版信息

Front Genet. 2014 May 23;5:144. doi: 10.3389/fgene.2014.00144. eCollection 2014.

Abstract

To date, more than 90 modified nucleosides have been found in tRNA and the biosynthetic pathways of the majority of tRNA modifications include a methylation step(s). Recent studies of the biosynthetic pathways have demonstrated that the availability of methyl group donors for the methylation in tRNA is important for correct and efficient protein synthesis. In this review, I focus on the methylated nucleosides and tRNA methyltransferases. The primary functions of tRNA methylations are linked to the different steps of protein synthesis, such as the stabilization of tRNA structure, reinforcement of the codon-anticodon interaction, regulation of wobble base pairing, and prevention of frameshift errors. However, beyond these basic functions, recent studies have demonstrated that tRNA methylations are also involved in the RNA quality control system and regulation of tRNA localization in the cell. In a thermophilic eubacterium, tRNA modifications and the modification enzymes form a network that responses to temperature changes. Furthermore, several modifications are involved in genetic diseases, infections, and the immune response. Moreover, structural, biochemical, and bioinformatics studies of tRNA methyltransferases have been clarifying the details of tRNA methyltransferases and have enabled these enzymes to be classified. In the final section, the evolution of modification enzymes is discussed.

摘要

迄今为止,在转运RNA(tRNA)中已发现90多种修饰核苷,并且大多数tRNA修饰的生物合成途径都包括一个或多个甲基化步骤。最近对生物合成途径的研究表明,tRNA甲基化过程中甲基供体的可用性对于正确且高效的蛋白质合成至关重要。在这篇综述中,我将重点关注甲基化核苷和tRNA甲基转移酶。tRNA甲基化的主要功能与蛋白质合成的不同步骤相关,比如tRNA结构的稳定、密码子 - 反密码子相互作用的增强、摆动碱基配对的调节以及移码错误的预防。然而,除了这些基本功能外,最近的研究表明,tRNA甲基化还参与RNA质量控制系统以及细胞中tRNA定位的调节。在一种嗜热真细菌中,tRNA修饰和修饰酶形成了一个对温度变化做出反应的网络。此外,几种修饰还与遗传疾病、感染及免疫反应有关。而且,对tRNA甲基转移酶的结构、生化和生物信息学研究一直在阐明tRNA甲基转移酶的细节,并使得这些酶能够被分类。在最后一部分,将讨论修饰酶的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfdb/4033218/d464e3228d98/fgene-05-00144-g0001.jpg

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