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与CMT-2D相关的甘氨酰-tRNA合成酶(GlyRS)突变的构象抽样

Conformational sampling of CMT-2D associated GlyRS mutations.

作者信息

Childers Matthew Carter, Regnier Michael, Bothwell Mark, Smith Alec S T

机构信息

Department of Bioengineering, University of Washington, Seattle, WA, United States.

The Institute for Stem Cell and Regenerative Medicine, University of Washington, Seattle, WA, United States.

出版信息

Brain Multiphys. 2022;3. doi: 10.1016/j.brain.2022.100054. Epub 2022 Sep 6.

Abstract

During protein synthesis, aminoacyl-tRNA synthetases covalently link amino acids with their cognate tRNAs. Amino acid mutations in glycyl-tRNA synthetase can disrupt protein synthesis and lead to a neurological disorder known as Charcot-Marie-Tooth disease type 2D (CMT-2D). Several studies employing diverse techniques have identified potential disease mechanisms at the molecular level. The majority of CMT-2D mutations in glycyl-tRNA are found within its dimer interface. However, no atomic structures bearing these mutations have been solved. Consequently, the specific disease-causing structural changes that occur in glycyl-tRNA synthetase have not been definitively established. Here we use molecular dynamics simulations to probe conformational changes in glycyl-tRNA synthetase caused by one mutation within the dimer interface: G240R. Our results show that the mutation alters the number of native interactions at the dimer interface and also leads to altered dynamics of two regions of glycyl-tRNA synthetase associated with tRNA binding. Additionally, we use our simulations to make predictions about the effects of other clinically reported CMT-2D mutations. Our results identify a region of the glycyl-tRNA synthetase structure that may be disrupted in a large number of CMT-2D mutations. Structural changes in this region may be a common molecular mechanism in glycyl-tRNA synthetase CMT-2D pathologies. In this study, we use molecular dynamics simulations to elucidate structural conformations accessible to glycyl-tRNA synthetase (GlyRS), an enzyme that ligates cytosolic glycine with tRNA-Gly. This protein contains multiple flexible regions with dynamics that elude structural characterization. Our computational approach provides unparalleled atomistic details of structural changes in GlyRS that contribute to its role in protein synthesis. A number of mutations in GlyRS are associated with a peripheral nerve disorder, Charcot-Marie-Tooth disease type 2D (CMT-2D). Mutation-induced structural and dynamic changes in GlyRS have similarity that elude structural characterization. Our simulations provide insights into disease mechanisms for one such mutation: G240R. Additionally, we leverage our computational data to identify regions of GlyRS critical to its function and to predict the effects of other disease-associated mutations. These results open up new directions for research into the molecular characterization of GlyRS and into hypothesis-driven studies of CMT-2D disease mechanisms.

摘要

在蛋白质合成过程中,氨酰-tRNA合成酶将氨基酸与其对应的tRNA共价连接。甘氨酰-tRNA合成酶中的氨基酸突变会破坏蛋白质合成,并导致一种称为2D型夏科-马里-图斯病(CMT-2D)的神经系统疾病。几项采用不同技术的研究已经在分子水平上确定了潜在的疾病机制。甘氨酰-tRNA合成酶中的大多数CMT-2D突变位于其二聚体界面内。然而,尚未解析出带有这些突变的原子结构。因此,甘氨酰-tRNA合成酶中发生的特定致病结构变化尚未得到明确证实。在这里,我们使用分子动力学模拟来探究由二聚体界面内的一个突变G240R引起的甘氨酰-tRNA合成酶的构象变化。我们的结果表明,该突变改变了二聚体界面处的天然相互作用数量,还导致了甘氨酰-tRNA合成酶中与tRNA结合相关的两个区域的动力学改变。此外,我们利用模拟对其他临床报道的CMT-2D突变的影响进行预测。我们的结果确定了甘氨酰-tRNA合成酶结构中的一个区域,该区域可能在大量CMT-2D突变中受到破坏。该区域的结构变化可能是甘氨酰-tRNA合成酶CMT-2D病理中的一种常见分子机制。在本研究中,我们使用分子动力学模拟来阐明甘氨酰-tRNA合成酶(GlyRS)可及的结构构象,GlyRS是一种将胞质甘氨酸与tRNA-Gly连接的酶。该蛋白质包含多个具有难以进行结构表征的动力学的柔性区域。我们的计算方法提供了GlyRS结构变化的无与伦比的原子细节,这些变化有助于其在蛋白质合成中的作用。GlyRS中的许多突变与一种周围神经疾病2D型夏科-马里-图斯病(CMT-2D)相关。GlyRS中突变诱导的结构和动力学变化具有难以进行结构表征的相似性。我们的模拟为一种这样的突变G240R的疾病机制提供了见解。此外,我们利用计算数据来识别GlyRS对其功能至关重要的区域,并预测其他疾病相关突变的影响。这些结果为GlyRS的分子表征研究和CMT-2D疾病机制的假设驱动研究开辟了新方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6920/9731397/adbbf8978b0d/nihms-1837737-f0001.jpg

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