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tRNA 识别景观:氨酰化及其他功能

The tRNA identity landscape for aminoacylation and beyond.

机构信息

Architecture et Réactivité de l'ARN, UPR9002 Centre National de la Recherche Scientifique, Université de Strasbourg, Institut de Biologie Moléculaire et Cellulaire, 2 allée Konrad Roentgen, 67084 Strasbourg, France.

出版信息

Nucleic Acids Res. 2023 Feb 28;51(4):1528-1570. doi: 10.1093/nar/gkad007.

Abstract

tRNAs are key partners in ribosome-dependent protein synthesis. This process is highly dependent on the fidelity of tRNA aminoacylation by aminoacyl-tRNA synthetases and relies primarily on sets of identities within tRNA molecules composed of determinants and antideterminants preventing mischarging by non-cognate synthetases. Such identity sets were discovered in the tRNAs of a few model organisms, and their properties were generalized as universal identity rules. Since then, the panel of identity elements governing the accuracy of tRNA aminoacylation has expanded considerably, but the increasing number of reported functional idiosyncrasies has led to some confusion. In parallel, the description of other processes involving tRNAs, often well beyond aminoacylation, has progressed considerably, greatly expanding their interactome and uncovering multiple novel identities on the same tRNA molecule. This review highlights key findings on the mechanistics and evolution of tRNA and tRNA-like identities. In addition, new methods and their results for searching sets of multiple identities on a single tRNA are discussed. Taken together, this knowledge shows that a comprehensive understanding of the functional role of individual and collective nucleotide identity sets in tRNA molecules is needed for medical, biotechnological and other applications.

摘要

tRNA 是核糖体依赖的蛋白质合成中的关键伙伴。该过程高度依赖于氨酰-tRNA 合成酶对 tRNA 的氨酰化的保真度,主要依赖于由决定因素和反决定因素组成的 tRNA 分子内的一组身份,以防止非同源合成酶的错误加载。这些身份集在少数模式生物的 tRNA 中被发现,并将其特性概括为通用身份规则。从那时起,控制 tRNA 氨酰化准确性的身份元素面板大大扩展,但报告的功能特性的数量不断增加导致了一些混乱。与此同时,涉及 tRNA 的其他过程的描述,通常远远超出氨酰化,也取得了相当大的进展,大大扩展了它们的相互作用组,并在同一 tRNA 分子上揭示了多个新的身份。这篇综述强调了 tRNA 和 tRNA 样身份的机制和进化方面的关键发现。此外,还讨论了用于在单个 tRNA 上搜索多个身份集的新方法及其结果。总之,这些知识表明,需要全面了解单个和集体核苷酸身份集在 tRNA 分子中的功能作用,以用于医学、生物技术和其他应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e20/9976931/45908dd70191/gkad007fig1.jpg

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