Construction of prokaryotic system for expression of porcine circovirus type 2 ORF-2 gene fragment

A. Galeeva, A. R. Akhunova, K. V. Usoltsev, N. I. Khammadov, M. Efimova
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Abstract

Porcine circovirus-associated diseases (PCVDs) are among the most significant challenges for pig farming in developed countries. Porcine circovirus type 2 (PCV-2) is considered the main etiological agent of postweaning multisystemic wasting syndrome in piglets. Mass PCVD occurrence has been reported in most regions of the world, that results in serious economic consequences. Optimal PCVD prevention is known to be achieved through a set of veterinary and sanitary measures in combination with vaccination. High evolutionary virus variability facilitating new genotype and strain emergence requires development of new candidate recombinant vaccines against PCV-2 infection. The study was aimed at construction of prokaryotic system for PCV-2 ORF-2 gene fragment expression and its functionality assessment. A genetic insert constructed from the most immunogenic type-specific PCV-2 epitopes based on genotype 2a, 2b, 2d strain and isolate consensus sequence was cloned into the expression vector pET-22b(+) that was incorporated into the Escherichia coli strain Rosetta 2(DE3). The transformants were selected based on the marker gene of ampicillin resistance on a selective medium. Target gene expression was induced by adding of isopropyl-β-D-1-thiogalactopyranoside at different concentrations. As a result, Escherichia coli Rosetta 2(DE3)/pET-22b-ORF-2 strain, a producer of capsid protein fragment (92–233 amino acid residues), was constructed. It was found that in the presence of 1 mM isopropyl-β-D-1-thiogalactopyranoside, the expression level of soluble truncated rCap was 35–40 mg/L 6 hours after induction. The expression product was tested for its specificity with indirect ELISA using whole-virion PCV-2-hyperimmunized porcine serum. It was shown that the positivity coefficient of producer strain cell lysates averaged to 4.34 (p < 0.005). The recombinant rCap protein is suitable for serological diagnosis and is also of interest as a vaccine component, which is the goal of our further studies.
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构建表达猪圆环病毒 2 型 ORF-2 基因片段的原核系统
猪圆环病毒相关疾病(PCVDs)是发达国家养猪业面临的最大挑战之一。猪圆环病毒 2 型(PCV-2)被认为是仔猪断奶后多系统消瘦综合征的主要病原体。据报道,世界上大多数地区都发生过大规模的 PCVD,造成了严重的经济后果。众所周知,预防 PCVD 的最佳方法是采取一系列兽医和卫生措施并结合疫苗接种。病毒的高度进化变异性促进了新基因型和毒株的出现,因此需要开发新的候选重组疫苗来预防 PCV-2 感染。本研究旨在构建原核系统,用于 PCV-2 ORF-2 基因片段的表达及其功能评估。根据基因型 2a、2b、2d 株和分离株的共识序列,从最具免疫原性的 PCV-2 特异性表位中构建了基因插入片段,并将其克隆到表达载体 pET-22b(+)中,然后将其整合到大肠杆菌菌株 Rosetta 2(DE3)中。根据氨苄青霉素抗性标记基因在选择性培养基上筛选转化子。加入不同浓度的异丙基-β-D-1-硫代半乳糖苷诱导目的基因的表达。结果,构建了大肠杆菌 Rosetta 2(DE3)/pET-22b-ORF-2 株系,它是一种产生帽状蛋白片段(92-233 个氨基酸残基)的菌株。结果发现,在 1 mM 异丙基-β-D-1-硫代半乳糖苷存在下,诱导 6 小时后可溶性截短 rCap 的表达水平为 35-40 mg/L。使用全病毒 PCV-2 超免疫猪血清对表达产物进行了间接 ELISA 特异性检测。结果显示,生产株细胞裂解物的阳性系数平均为 4.34(p < 0.005)。重组 rCap 蛋白适用于血清学诊断,也可用作疫苗成分,这正是我们进一步研究的目标。
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