Antibodies Produced Toward Recombinant RBD and Nucleocapsid Neutralize SARS-COV-2

Q3 Biochemistry, Genetics and Molecular Biology Avicenna journal of medical biotechnology Pub Date : 2022-09-03 DOI:10.18502/ajmb.v14i4.10481
Amir Rezaei, S. Nazarian, Hossein Samiei Abianeh, Emad Kordbacheh, Zahra Alizadeh, S. M. Mousavi Gargari
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Abstract

Background: The highly contagious SARS-COV-2 virus spread rapidly from China and formed a global pandemic. The virus has infected over 509 million people worldwide and killed about 6.32 million up to date. Up on invasion, the Receptor Binding Domain (RBD) of Spike protein plays a crucial role in the entry of the virus into the host cell. The virus N protein is another protein that has a critical role for genome packaging. Methods: As bioinformatics approaches, the cassette design, codon adaptation, and protein stability were investigated in this study. Synthetic genes of RBD and N were cloned separately in pET28a + expression vector. They were transferred into Escherichia coli (E. coli) BL21 DE3 host cell, and expression of recombinant proteins was induced with IPTG. The recombinant proteins were purified by column chromatography and approved by Western blotting. Animal immunization was performed with each of the recombinant proteins individually and in combination of the two. The antibody titer of the blood serum from control and immunized mice groups was determined by ELISA technique. Finally, the anti-spike neutralization test was performed. Results: The expression and purification of RBD protein were monitored on SDS-PAGE, two bands of about 28 and 45 kDa for RBD and N appeared on gel distinctly, which were further validated by Western blotting. According to ELISA results, related antibodies were traced to a dilution of 1/64000 in immunized sera. The neutralization test exhibited produced antibodies' potency to bind the virus proteins. Using SPSS software, statistical analysis was performed by Duncan's test and T-test. Conclusion: According to the present study, recombinant proteins, either RBD alone or in combination with N adequately stimulated the immune response, and the raised antibodies could neutralize the virus in in vitro test.
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重组RBD和核衣壳抗体的制备中和SARS-COV-2
背景:高传染性SARS-COV-2病毒从中国迅速传播并形成全球大流行。迄今为止,该病毒已感染全球5.09亿多人,造成约632万人死亡。在入侵过程中,Spike蛋白的受体结合域(Receptor Binding Domain, RBD)在病毒进入宿主细胞中起着至关重要的作用。病毒N蛋白是另一种对基因组包装起关键作用的蛋白质。方法:采用生物信息学的方法,对基因盒设计、密码子适应性和蛋白质稳定性进行研究。在pET28a +表达载体上分别克隆了RBD和N合成基因。将重组蛋白转移至大肠杆菌BL21 DE3宿主细胞,用IPTG诱导重组蛋白表达。重组蛋白经柱层析纯化,Western blotting鉴定。用每种重组蛋白单独或联合进行动物免疫。采用ELISA法测定对照组和免疫组小鼠血清的抗体效价。最后进行抗尖峰中和试验。结果:在SDS-PAGE上监测了RBD蛋白的表达和纯化,凝胶上明显出现了RBD和N的约28和45 kDa两条条带,并通过Western blotting进一步验证。根据ELISA结果,相关抗体在免疫血清中的稀释率为1/64000。中和试验显示产生的抗体能结合病毒蛋白。采用SPSS软件,采用Duncan检验和t检验进行统计分析。结论:根据本研究,重组蛋白RBD单独或与N联合均能充分刺激免疫反应,体外试验中产生的抗体能中和病毒。
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来源期刊
Avicenna journal of medical biotechnology
Avicenna journal of medical biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
2.90
自引率
0.00%
发文量
43
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