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tRNA 修饰:对结构和热适应的影响。

tRNA Modifications: Impact on Structure and Thermal Adaptation.

机构信息

Institute of Biochemistry, Leipzig University, Brüderstraße 34, 04103 Leipzig, Germany.

出版信息

Biomolecules. 2017 Apr 4;7(2):35. doi: 10.3390/biom7020035.

Abstract

Transfer RNAs (tRNAs) are central players in translation, functioning as adapter molecules between the informational level of nucleic acids and the functional level of proteins. They show a highly conserved secondary and tertiary structure and the highest density of post-transcriptional modifications among all RNAs. These modifications concentrate in two hotspots-the anticodon loop and the tRNA core region, where the D- and T-loop interact with each other, stabilizing the overall structure of the molecule. These modifications can cause large rearrangements as well as local fine-tuning in the 3D structure of a tRNA. The highly conserved tRNA shape is crucial for the interaction with a variety of proteins and other RNA molecules, but also needs a certain flexibility for a correct interplay. In this context, it was shown that tRNA modifications are important for temperature adaptation in thermophilic as well as psychrophilic organisms, as they modulate rigidity and flexibility of the transcripts, respectively. Here, we give an overview on the impact of modifications on tRNA structure and their importance in thermal adaptation.

摘要

转移 RNA(tRNA)是翻译过程中的核心分子,充当核酸的信息水平和蛋白质的功能水平之间的衔接分子。它们具有高度保守的二级和三级结构,并且在所有 RNA 中具有最高密度的转录后修饰。这些修饰集中在两个热点区域——反密码子环和 tRNA 核心区域,其中 D-环和 T-环相互作用,稳定分子的整体结构。这些修饰可以导致 tRNA 三维结构的大重排以及局部微调。高度保守的 tRNA 形状对于与各种蛋白质和其他 RNA 分子的相互作用至关重要,但也需要一定的灵活性以实现正确的相互作用。在这方面,已经表明 tRNA 修饰对于嗜热和嗜冷生物的温度适应很重要,因为它们分别调节转录本的刚性和柔性。在这里,我们概述了修饰对 tRNA 结构的影响及其在热适应中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90ab/5485724/796a2dfa8231/biomolecules-07-00035-g001.jpg

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