Effects of Glutathionylation on Guanylyltransferase Activity of NS5 N-terminal Capping Domain from Dengue, Japanese Encephalitis, and Zika Viruses.

IF 1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chonticha Saisawang, Onrapak Reamtong, Isara Nachampa, Patchareebhorn Petcharat, Suphansa Priewkhiew, Somsri Sakdee, Jantana Wongsantichon, Albert J Ketterman
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引用次数: 0

Abstract

Background: Glutathionylation is a protein post-translational modification triggered by oxidative stress. The susceptible proteins are modified by the addition of glutathione to specific cysteine residues. Virus infection also induces oxidative stress in the cell, which affects cellular homeostasis. It is not just the cellular proteins but the viral proteins that can also be modified by glutathionylation events, thereby impacting the function of the viral proteins.

Objectives: This study was conducted to identify the effects of modification by glutathionylation on the guanylyltransferase activity of NS5 and identify the cysteine residues modified for the three flavivirus NS5 proteins.

Methods: The capping domain of NS5 proteins from 3 flaviviruses was cloned and expressed as recombinant proteins. A gel-based assay for guanylyltransferase activity was performed using a GTP analog labeled with the fluorescent dye Cy5 as substrate. The protein modification by glutathionylation was induced by GSSG and evaluated by western blot. The reactive cysteine residues were identified by mass spectrometry.

Results: It was found that the three flavivirus proteins behaved in a similar fashion with increasing glutathionylation yielding decreased guanylyltransferase activity. The three proteins also possessed conserved cysteines and they appeared to be modified for all three proteins.

Conclusion: The glutathionylation appeared to induce conformational changes that affect enzyme activity. The conformational changes might also create binding sites for host cell protein interactions at later stages of viral propagation with the glutathionylation event, thereby serving as a switch for function change.

谷胱甘肽化对登革热病毒、日本脑炎病毒和寨卡病毒NS5 n端盖层结构域Guanylyltransferase活性的影响
背景:谷胱甘肽化是一种由氧化应激触发的蛋白质翻译后修饰。通过在特定的半胱氨酸残基上添加谷胱甘肽来修饰易感蛋白。病毒感染还会引起细胞内的氧化应激,从而影响细胞内稳态。不仅是细胞蛋白,病毒蛋白也可以被谷胱甘肽化事件修饰,从而影响病毒蛋白的功能。目的:研究谷胱甘肽修饰对NS5鸟苷基转移酶活性的影响,并鉴定3种黄病毒NS5蛋白修饰后的半胱氨酸残基。方法:克隆3种黄病毒NS5蛋白的capping结构域,并以重组蛋白的形式表达。使用荧光染料Cy5标记的GTP类似物作为底物,进行了基于凝胶的鸟苷基转移酶活性测定。GSSG诱导谷胱甘肽修饰蛋白,western blot评价蛋白修饰效果。反应性半胱氨酸残基用质谱法鉴定。结果:发现三种黄病毒蛋白表现出相似的方式,增加谷胱甘肽化产生降低鸟苷基转移酶活性。这三种蛋白质也具有保守的半胱氨酸,它们似乎对这三种蛋白质都进行了修饰。结论:谷胱甘肽化可能引起构象变化,影响酶活性。构象变化也可能为病毒传播后期与谷胱甘肽化事件的宿主细胞蛋白相互作用创造结合位点,从而作为功能改变的开关。
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来源期刊
Protein and Peptide Letters
Protein and Peptide Letters 生物-生化与分子生物学
CiteScore
2.90
自引率
0.00%
发文量
98
审稿时长
2 months
期刊介绍: Protein & Peptide Letters publishes letters, original research papers, mini-reviews and guest edited issues in all important aspects of protein and peptide research, including structural studies, advances in recombinant expression, function, synthesis, enzymology, immunology, molecular modeling, and drug design. Manuscripts must have a significant element of novelty, timeliness and urgency that merit rapid publication. Reports of crystallization and preliminary structure determination of biologically important proteins are considered only if they include significant new approaches or deal with proteins of immediate importance, and preliminary structure determinations of biologically important proteins. Purely theoretical/review papers should provide new insight into the principles of protein/peptide structure and function. Manuscripts describing computational work should include some experimental data to provide confirmation of the results of calculations. Protein & Peptide Letters focuses on: Structure Studies Advances in Recombinant Expression Drug Design Chemical Synthesis Function Pharmacology Enzymology Conformational Analysis Immunology Biotechnology Protein Engineering Protein Folding Sequencing Molecular Recognition Purification and Analysis
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