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缬氨酰-tRNA合成酶与其转移前和转移后编辑底物的分子动力学模拟研究。

Molecular dynamics simulation study of valyl-tRNA synthetase with its pre- and post-transfer editing substrates.

作者信息

Bharatham Nagakumar, Bharatham Kavitha, Lee Yuno, Woo Lee Keun

机构信息

Division of Applied Life Science (BK21 Program), Environmental Biotechnology National Core Research Center, Gyeongsang National University, Jinju 660-701, Republic of Korea.

出版信息

Biophys Chem. 2009 Jul;143(1-2):34-43. doi: 10.1016/j.bpc.2009.03.009. Epub 2009 Mar 28.

Abstract

The main role of aminoacyl-tRNA synthetases (aaRSs) is to transfer the cognate amino acids to the 3'-end of their tRNA by strictly discriminating from non-cognate amino acids. Some aaRSs accomplish this via proofreading and editing mechanisms, among which valyl-tRNA synthetase (ValRS) hydrolyses the non-cognate amino acid, threonine. In ValRS, existence of pre-transfer editing process is still unclear, although crystal structure of editing site with pre-transfer substrate analog (Thr-AMS) was released. In the case of isoleucyl-tRNA synthetase (IleRS), editing mechanism is well studied and mutational analyses revealed the existence of post- and pre-transfer editing mechanisms. Our aim is to investigate the possibility of pre-transfer editing process by performing molecular dynamics (MD) simulation studies. Simulations were carried out for ValRS with pre-transfer substrates (Thr-AMP/Val-AMP) and post-transfer substrates (Thr-A76/Val-A76) to understand their binding pattern. Two important point mutation studies were performed to observe their effect on editing process. This study also intends to compare and contrast the pre-transfer editing with post-transfer editing of ValRS. Interestingly, the MD simulation results revealed that non-cognate substrates (Thr-AMP/Thr-A76) bind more strongly than the cognate substrates (Val-AMP/Val-A76) in both pre- and post-transfer editing respectively. The editing site mutations (Lys270Ala and Asp279Ala) severely affected the binding ability of pre-transfer substrate (Thr-AMP) by different ways. Even though pre- and post-transfer substrates bind to the same site, specific differences were observed which has led us to believe the existence of the pre-transfer editing process in ValRS.

摘要

氨酰 - tRNA合成酶(aaRSs)的主要作用是通过严格区分非同源氨基酸,将同源氨基酸转移到其tRNA的3'末端。一些aaRSs通过校对和编辑机制来完成这一过程,其中缬氨酰 - tRNA合成酶(ValRS)可水解非同源氨基酸苏氨酸。在ValRS中,尽管已公布了带有转移前底物类似物(苏氨酸 - AMS)的编辑位点的晶体结构,但转移前编辑过程的存在仍不明确。就异亮氨酰 - tRNA合成酶(IleRS)而言,其编辑机制已得到充分研究,突变分析揭示了转移后和转移前编辑机制的存在。我们的目标是通过进行分子动力学(MD)模拟研究来探究转移前编辑过程的可能性。对带有转移前底物(苏氨酸 - AMP/缬氨酸 - AMP)和转移后底物(苏氨酸 - A76/缬氨酸 - A76)的ValRS进行模拟,以了解它们的结合模式。进行了两项重要的点突变研究,以观察其对编辑过程的影响。本研究还旨在比较和对比ValRS的转移前编辑与转移后编辑。有趣的是,MD模拟结果显示,在转移前和转移后编辑中,非同源底物(苏氨酸 - AMP/苏氨酸 - A76)分别比同源底物(缬氨酸 - AMP/缬氨酸 - A76)结合得更紧密。编辑位点突变(赖氨酸270突变为丙氨酸和天冬氨酸279突变为丙氨酸)以不同方式严重影响了转移前底物(苏氨酸 - AMP)的结合能力。尽管转移前和转移后底物结合到同一位点,但观察到了特定差异,这使我们相信ValRS中存在转移前编辑过程。

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