阐明锥虫精氨酰tRNA合成酶的结构-功能属性。

IF 1.4 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular and biochemical parasitology Pub Date : 2023-10-16 DOI:10.1016/j.molbiopara.2023.111597
Pratyasha Bhowal , Bappaditya Roy , Sayak Ganguli , Gabor L. Igloi , Rajat Banerjee
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引用次数: 0

摘要

氨酰基tRNA合成酶(aaRS)是蛋白质翻译机制的基本组成部分。鉴于它们在蛋白质合成和物种间结构差异中的关键作用,它们一直被认为是开发抗菌化合物的潜在靶点。来自克鲁兹锥虫的精氨酰tRNA合成酶(TcArgRS)是导致恰加斯病的寄生虫,它含有一个100个氨基酸的插入,根据多序列比对结果确定,该插入在类似长度的人类对应物中完全不存在。因此,我们被要求使用生物物理、生物化学和生物信息学工具对TcArgRS进行初步表征。我们在大肠杆菌中表达了该蛋白,并验证了其体外酶活性。此外,使用固有色氨酸荧光测量对DTNB动力学、圆二色性(CD)光谱和配体结合研究的分析有助于我们了解在缺乏可用晶体结构的情况下的一些结构特征。我们的研究表明,TcArgRS可以区分L-精氨酸及其类似物。在许多测试的底物中,只有L-精氨酸和L-硫代精氨酸(一种合成精氨酸类似物)表现出显著的活化。还使用硅方法测定了各种基质的结合。这项研究可能为研究可靶向TcArgRS的小化合物提供可行的基础。
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Elucidating the structure-function attributes of a trypanosomal arginyl-tRNA synthetase

Aminoacyl-tRNA synthetases (aaRSs) are fundamental components of the protein translation machinery. In light of their pivotal role in protein synthesis and structural divergence among species, they have always been considered potential targets for the development of antimicrobial compounds. Arginyl-tRNA synthetase from Trypanosoma cruzi (TcArgRS), the parasite responsible for causing Chagas Disease, contains a 100-amino acid insertion that was found to be completely absent in the human counterpart of similar length, as ascertained from multiple sequence alignment results. Thus, we were prompted to perform a preliminary characterization of TcArgRS using biophysical, biochemical, and bioinformatics tools. We expressed the protein in E. coli and validated its in-vitro enzymatic activity. Additionally, analysis of DTNB kinetics, Circular dichroism (CD) spectra, and ligand-binding studies using intrinsic tryptophan fluorescence measurements aided us to understand some structural features in the absence of available crystal structures. Our study indicates that TcArgRS can discriminate between L-arginine and its analogues. Among the many tested substrates, only L-canavanine and L-thioarginine, a synthetic arginine analogue exhibited notable activation. The binding of various substrates was also determined using in silico methods. This study may provide a viable foundation for studying small compounds that can be targeted against TcArgRS.

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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
51
审稿时长
63 days
期刊介绍: The journal provides a medium for rapid publication of investigations of the molecular biology and biochemistry of parasitic protozoa and helminths and their interactions with both the definitive and intermediate host. The main subject areas covered are: • the structure, biosynthesis, degradation, properties and function of DNA, RNA, proteins, lipids, carbohydrates and small molecular-weight substances • intermediary metabolism and bioenergetics • drug target characterization and the mode of action of antiparasitic drugs • molecular and biochemical aspects of membrane structure and function • host-parasite relationships that focus on the parasite, particularly as related to specific parasite molecules. • analysis of genes and genome structure, function and expression • analysis of variation in parasite populations relevant to genetic exchange, pathogenesis, drug and vaccine target characterization, and drug resistance. • parasite protein trafficking, organelle biogenesis, and cellular structure especially with reference to the roles of specific molecules • parasite programmed cell death, development, and cell division at the molecular level.
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