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一种基于分子动力学模拟的研究:嗜热栖热菌亮氨酰-tRNA 合成酶编辑结构域的氨基酸选择性。

A molecular dynamics simulation study of amino acid selectivity of LeuRS editing domain from Thermus thermophilus.

机构信息

Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, 150 Academician Zabolotny Str., 03680 Kyiv, Ukraine; Laboratory of Bioinformatics and Structural Biology, Institute of Food Biotechnology and Genomics, National Academy of Sciences of Ukraine, 2a Osyposkoho Str., 04123 Kyiv, Ukraine.

Medway School of Pharmacy, Universities of Kent and Greenwich, Kent ME4 4TB, UK.

出版信息

J Mol Graph Model. 2018 Sep;84:74-81. doi: 10.1016/j.jmgm.2018.06.015. Epub 2018 Jun 18.

Abstract

The accuracy of protein synthesis is provided by the editing functions of aminoacyl-tRNA synthetases (aaRSs), a mechanism that eliminates misactivated amino acids or mischarged tRNAs. Despite research efforts, some molecular bases of these mechanisms are still unclear. The post-transfer editing pathway of leucyl-tRNA synthetase (LeuRS) carried out in a special insertion domain (the Connective Polypeptide 1 or CP1), as editing domain. Recently, it was shown by in vivo studies and was supported by mutagenesis, and the kinetics approaches that the CP1 domain of LeuRS has discriminatory power for different substrates. The goal of this work is to investigate the structural basis for amino acid recognition of LeuRS post-transfer editing processes with molecular dynamics (MD) simulation method. To pursue this aim, the molecular modeling studies on Thermus thermophiles LeuRS (LeuRSTT) with two post-transfer substrates (norvalyl-tRNA and isoleucyl-tRNA) was performed. Our results revealed that post-transfer substrate norvalyl-tRNA is more favorable. Moreover, the MD simulations show that branched side chain of Ile-A76 cannot allow water molecules to get close, which leads to a significant decrease in the rate of hydrolysis. Finally, the study showed that site mutation Asp347Ala has elucidated a number of fine structural differences in the binding mode of two post-transfer substrates to the active centre of LeuRS editing domain and two conserved threonines, namely Thr247 and Thr248, are responsible for the amino acid selection through the interaction with substrates.

摘要

蛋白质合成的准确性由氨酰-tRNA 合成酶(aaRSs)的编辑功能提供,这是一种消除错误激活的氨基酸或错误加载的 tRNA 的机制。尽管进行了研究,但这些机制的一些分子基础仍不清楚。亮氨酰-tRNA 合成酶(LeuRS)的转移后编辑途径在特殊的插入结构域(连接多肽 1 或 CP1)中进行,作为编辑结构域。最近的体内研究和突变研究以及动力学方法表明,LeuRS 的 CP1 结构域对不同的底物具有鉴别力。本工作的目的是用分子动力学(MD)模拟方法研究 LeuRS 转移后编辑过程中氨基酸识别的结构基础。为了实现这一目标,对嗜热栖热菌 LeuRS(LeuRSTT)与两种转移后底物(正缬氨酰-tRNA 和异亮氨酰-tRNA)的分子建模研究进行了研究。我们的结果表明,转移后底物正缬氨酰-tRNA 更有利。此外,MD 模拟表明,Ile-A76 的支链侧链不能让水分子靠近,这导致水解速率显著降低。最后,该研究表明,Asp347Ala 位点突变阐明了两种转移后底物与 LeuRS 编辑结构域活性中心结合模式的一些细微结构差异,并且两个保守的苏氨酸,即 Thr247 和 Thr248,通过与底物的相互作用负责氨基酸的选择。

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