[Prokaryotic expression and helicase activity analysis of PDCoV NSP13].

Q4 Biochemistry, Genetics and Molecular Biology
Lihan Tao, Chengcheng Wu, Cui Lin, Zhaofeng Kang, Jianzhen Huang
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引用次数: 0

Abstract

Porcine deltacoronavirus (PDCoV) is a major pathogen causing fatal diarrhea in suckling piglets, and there is currently a lack of effective vaccines and drugs to prevent and control the virus. The nonstructural protein 13 (NSP13) serves as a virus-coded helicase and is considered to be a crucial target for antiviral drugs, making it imperative to investigate the helicase activity of NSP13. In this study, the NSP13 gene of PDCoV was synthesized and integrated into the prokaryotic expression vector pET-28a to construct the recombinant plasmid pET-28a-NSP13. NSP13 was successfully expressed in BL21 (DE3) and subsequently purified. The study also verified the helicase activity of the purified NSP13 and explored the factors that influence this activity. The results indicated that NSP13 from PDCoV was effectively expressed in the prokaryotic system and exhibited helicase activity, capable of unwinding double-stranded DNA with a tail at the 5' end. Additionally, NSP13 demonstrated an annealing function by promoting the complementary pairing of single-stranded nucleotide chains to form double strands. The helicase activity of NSP13 was affected by metal ions, but Mg2+concentrations in the range of 0.5-6.0 mmol/L had no significant effect on helicase activity of NSP13. When the solution pH was in the range of 4-9, there was no difference in helicase activity. ATP concentrations in the range of 0.25-6.00 mmol/L had a weak effect on helicase activity, and NSP13 concentration ≥80 nmol/L inhibited the helicase activity. We obtained the NSP13 of PDCoV and investigated its helicase activity. These findings provided a theoretical foundation for the further research on the regulatory mechanism of NSP13 in PDCoV replication and the development of anti-coronaviral drugs.

PDCoV NSP13的原核表达及解旋酶活性分析
猪三角冠状病毒(PDCoV)是引起哺乳仔猪致命性腹泻的主要病原体,目前缺乏有效的疫苗和药物来预防和控制该病毒。非结构蛋白13 (NSP13)是一种病毒编码的解旋酶,被认为是抗病毒药物的重要靶点,因此研究NSP13的解旋酶活性势在必行。本研究合成了PDCoV NSP13基因,并将其整合到原核表达载体pET-28a中,构建了重组质粒pET-28a-NSP13。NSP13在BL21 (DE3)中成功表达,随后得到纯化。本研究还验证了纯化的NSP13解旋酶活性,并探讨了影响解旋酶活性的因素。结果表明,来自PDCoV的NSP13在原核系统中有效表达,并表现出解旋酶活性,能够解绕5'端有尾巴的双链DNA。此外,NSP13通过促进单链核苷酸链的互补配对形成双链而显示出退火功能。金属离子对NSP13解旋酶活性有影响,但0.5 ~ 6.0 mmol/L的Mg2+浓度对NSP13解旋酶活性无显著影响。当溶液pH在4 ~ 9范围内时,解旋酶活性无显著差异。ATP浓度在0.25 ~ 6.00 mmol/L范围内对解旋酶活性影响较弱,NSP13浓度≥80 nmol/L对解旋酶活性有抑制作用。我们获得了PDCoV的NSP13,并对其解旋酶活性进行了研究。这些发现为进一步研究NSP13在PDCoV复制中的调控机制和开发抗冠状病毒药物提供了理论基础。
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来源期刊
Sheng wu gong cheng xue bao = Chinese journal of biotechnology
Sheng wu gong cheng xue bao = Chinese journal of biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.50
自引率
0.00%
发文量
298
期刊介绍: Chinese Journal of Biotechnology (Chinese edition) , sponsored by the Institute of Microbiology, Chinese Academy of Sciences and the Chinese Society for Microbiology, is a peer-reviewed international journal. The journal is cited by many scientific databases , such as Chemical Abstract (CA), Biology Abstract (BA), MEDLINE, Russian Digest , Chinese Scientific Citation Index (CSCI), Chinese Journal Citation Report (CJCR), and Chinese Academic Journal (CD version). The Journal publishes new discoveries, techniques and developments in genetic engineering, cell engineering, enzyme engineering, biochemical engineering, tissue engineering, bioinformatics, biochips and other fields of biotechnology.
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