细菌世界中的氨基酰-tRNA 合成酶

Q1 Medicine
Richard Giegé, Mathias Springer
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引用次数: 0

摘要

氨基酰-tRNA 合成酶(aaRSs)是一种模块化酶,在三大生命系统中普遍存在。它们都催化相同的两步反应,即在其同源的 tRNA 上连接可产生蛋白质的氨基酸,从而介导遗传密码的正确表达。此外,一些 aaRS 除了在翻译中发挥关键作用外,还具有其他功能。基因组学和 X 射线晶体学揭示了 aaRS 结构的巨大多样性(例如,在寡聚和模块化方面,通过附加在催化模块上的附加结构域,将其分为两个不同的组,每个组又分为 3 个亚组)。AaRS 在结构上具有与功能相关的巨大可塑性,并具有王国甚至物种特有的有限特异性(例如,在许多细菌中存在非鉴别性 aaRS,以弥补一两个特异性 aaRS 的缺失,特别是 AsnRS 和/或 GlnRS)。此外,在进化过程中并不保守的 aaRS 基因调控机制也存在多样性,尤其是在革兰氏阳性菌和革兰氏阴性菌等相距甚远的菌群之间。本综述侧重于细菌 aaRS(及其旁系亲属),涵盖其结构、功能、调控和进化。其中强调了结构/功能关系,特别是 tRNA 氨基酰化的酶学以及纠正激活和充电错误的编辑机制。书中回顾了过去二十年积累的大量基因组和结构数据,展示了该领域如何从本质上的还原生物学转向更全面和综合的方法。同样,还综述了 aaRS 的替代功能和 aaRS 旁系亲属的替代功能(如在细胞壁生物生成过程中以及蛋白质合成内外的其他代谢过程中)。由于 aaRS 系统发育呈现出细菌、古细菌和真核生物的混杂特征,综述中指出了这三个生命王国的 aaRS 特性的异同,并概述了来自细胞器的类细菌合成酶的独特特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aminoacyl-tRNA Synthetases in the Bacterial World.

Aminoacyl-tRNA synthetases (aaRSs) are modular enzymes globally conserved in the three kingdoms of life. All catalyze the same two-step reaction, i.e., the attachment of a proteinogenic amino acid on their cognate tRNAs, thereby mediating the correct expression of the genetic code. In addition, some aaRSs acquired other functions beyond this key role in translation. Genomics and X-ray crystallography have revealed great structural diversity in aaRSs (e.g., in oligomery and modularity, in ranking into two distinct groups each subdivided in 3 subgroups, by additional domains appended on the catalytic modules). AaRSs show huge structural plasticity related to function and limited idiosyncrasies that are kingdom or even species specific (e.g., the presence in many Bacteria of non discriminating aaRSs compensating for the absence of one or two specific aaRSs, notably AsnRS and/or GlnRS). Diversity, as well, occurs in the mechanisms of aaRS gene regulation that are not conserved in evolution, notably between distant groups such as Gram-positive and Gram-negative Bacteria. The review focuses on bacterial aaRSs (and their paralogs) and covers their structure, function, regulation, and evolution. Structure/function relationships are emphasized, notably the enzymology of tRNA aminoacylation and the editing mechanisms for correction of activation and charging errors. The huge amount of genomic and structural data that accumulated in last two decades is reviewed, showing how the field moved from essentially reductionist biology towards more global and integrated approaches. Likewise, the alternative functions of aaRSs and those of aaRS paralogs (e.g., during cell wall biogenesis and other metabolic processes in or outside protein synthesis) are reviewed. Since aaRS phylogenies present promiscuous bacterial, archaeal, and eukaryal features, similarities and differences in the properties of aaRSs from the three kingdoms of life are pinpointed throughout the review and distinctive characteristics of bacterium-like synthetases from organelles are outlined.

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来源期刊
EcoSal Plus
EcoSal Plus Immunology and Microbiology-Microbiology
CiteScore
12.20
自引率
0.00%
发文量
4
期刊介绍: EcoSal Plus is the authoritative online review journal that publishes an ever-growing body of expert reviews covering virtually all aspects of E. coli, Salmonella, and other members of the family Enterobacteriaceae and their use as model microbes for biological explorations. This journal is intended primarily for the research community as a comprehensive and continuously updated archive of the entire corpus of knowledge about the enteric bacterial cell. Thoughtful reviews focus on physiology, metabolism, genetics, pathogenesis, ecology, genomics, systems biology, and history E. coli and its relatives. These provide the integrated background needed for most microbiology investigations and are essential reading for research scientists. Articles contain links to E. coli K12 genes on the EcoCyc database site and are available as downloadable PDF files. Images and tables are downloadable to PowerPoint files.
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