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杆状病毒重组包涵体作为口蹄疫病毒非结构蛋白的载体

Recombinant occlusion bodies of baculovirus as carriers of a non-structural protein of foot-and-mouth disease virus.

作者信息

Diez Michay, Trotta Myrian, Alfonso Victoria, Taboga Oscar, López María Gabriela

机构信息

1Instituto de Biotecnología, Instituto Nacional de Tecnología Agropecuaria (INTA), De los Reseros y N. Repetto s/n, (1686), Hurlingham, Argentina.

2Instituto de Virología, INTA, De los Reseros y N. Repetto s/n, (1686), Hurlingham, Argentina.

出版信息

3 Biotech. 2018 Nov;8(11):457. doi: 10.1007/s13205-018-1482-x. Epub 2018 Oct 20.

Abstract

Here, we developed a diagnostic ELISA for foot-and-mouth disease using recombinant occlusion bodies (rOBs) of baculovirus. We fused Δ3AB, a polypeptide derived from non-structural proteins of foot-and-mouth disease virus, to polyhedrin (POLH), the major constituent of OBs, under promoter. To further assess the most convenient strategy to improve yields, we designed two recombinant baculoviruses, vPOLH and vPOLH. These carried the sequence of the fusion protein POLH-Δ3AB with an additional copy in cis of or , respectively, under promoter. Our results show that both viruses expressed POLH-Δ3AB, which was detected by western blot in purified rOBs with anti-POLH and anti-3AB1 antibodies. We also found that vPOLH produced larger polyhedra and a significant increase of antigen yield ( < 0.01). Furthermore, the chimeric protein POLH-Δ3AB was recognized by sera from experimentally infected animals, showing that translational fusion to POLH does not alter the antigenicity of Δ3AB. Finally, the rOBs were successfully used in an ELISA test to differentiate infected from vaccinated animals. Taken together, these results demonstrate the great potential of rOBs to develop diagnostic schemes adaptable to animal infectious diseases.

摘要

在此,我们利用杆状病毒的重组包涵体(rOBs)开发了一种口蹄疫诊断酶联免疫吸附测定法(ELISA)。我们在启动子的作用下,将源自口蹄疫病毒非结构蛋白的多肽Δ3AB与包涵体的主要成分多角体蛋白(POLH)融合。为了进一步评估提高产量的最便捷策略,我们设计了两种重组杆状病毒,vPOLH和vPOLH。它们分别在启动子的作用下,携带融合蛋白POLH-Δ3AB的序列,且在顺式结构中有一个额外的 或 的拷贝。我们的结果表明,两种病毒均表达了POLH-Δ3AB,通过蛋白质免疫印迹法,使用抗POLH和抗3AB1抗体在纯化的rOBs中检测到了该蛋白。我们还发现,vPOLH产生了更大的多角体,且抗原产量显著增加(<0.01)。此外,嵌合蛋白POLH-Δ3AB能被实验感染动物的血清识别,这表明与POLH的翻译融合不会改变Δ3AB的抗原性。最后,rOBs成功用于ELISA试验,以区分感染动物和接种疫苗的动物。综上所述,这些结果证明了rOBs在开发适用于动物传染病的诊断方案方面具有巨大潜力。

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