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Expression and purification of Suid Herpesvirus-1 glycoprotein E in the baculovirus system and its use to diagnose Aujeszky’s disease in infected pigs

机译:杆状病毒系统中Suid Herpesvirus-1糖蛋白E的表达和纯化及其在感染猪中诊断Aujeszky病的用途

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摘要

Suid Herpesvirus 1 (SHV-1) is the etiological agent of Aujeszky’s disease (AD), which affects swine herds worldwide and causes substantial economic losses due to animal mortality and lost productivity. In order to eradicate SHV-1, vaccination programs using viruses lacking the gene encoding glycoprotein E (gE) are ongoing in several countries. These eradication programs have generated a currently unmet demand for affordable and sensitive tests that can detect SHV-1 infection, yet distinguish between infected and vaccinated pigs. To meet this demand, we used the baculovirus-insect cell system to produce immunologically authentic full-length recombinant gE protein for use in a serum ELISA assay. As previous efforts to clone the gE gene had failed due to its extremely high GC-content (75% average), we used betaine as a PCR enhancer to facilitate amplification of the entire gE gene from the Argentinian CL15 strain of SHV-1. The cloned gE gene was expressed at high levels in recombinant baculovirus-infected insect cells and reacted strongly with sera from SHV-1 infected pigs. We used the recombinant gE protein to develop a local indirect ELISA test with sensitivity and specificity comparable to currently available commercial tests. Thus, recombinant gE produced in baculovirus-infected insect cells is a viable source of antigen for the detection of SHV-1 in ELISA tests. We also provide evidence supporting a potential application of this recombinant form of gE as a SHV-1 subunit vaccine.
机译:Suid疱疹病毒1(SHV-1)是Aujeszky病(AD)的病原体,它会影响全世界的猪群,并由于动物死亡和生产力损失而造成重大的经济损失。为了根除SHV-1,一些国家正在实施使用缺乏编码糖蛋白E(gE)基因的病毒的疫苗接种计划。这些根除计划对可检测SHV-1感染但又能区分感染猪和疫苗猪的价格合理且敏感的检测目前没有得到满足。为了满足这一需求,我们使用杆状病毒-昆虫细胞系统来生产具有免疫学意义的全长重组gE蛋白,用于血清ELISA分析。由于先前克隆gE基因的努力由于其极高的GC含量(平均75%)而失败,因此我们使用甜菜碱作为PCR增强剂,以促进从SHV-1的阿根廷CL15菌株扩增整个gE基因。克隆的gE基因在重组杆状病毒感染的昆虫细胞中高表达,并与SHV-1感染猪的血清强烈反应。我们使用重组gE蛋白开发了一种局部间接ELISA试验,其敏感性和特异性与目前市售的试验相当。因此,在杆状病毒感染的昆虫细胞中产生的重组gE是在ELISA测试中检测SHV-1的可行抗原来源。我们还提供了支持这种重组形式的gE作为SHV-1亚单位疫苗的潜在应用的证据。

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