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杆状病毒介导的全长植物病毒外壳蛋白表达和纯化策略。

A baculovirus-mediated strategy for full-length plant virus coat protein expression and purification.

机构信息

Department of Cell Biology, Laboratory of Electron Microscopy, Institute of Biological Sciences, University of Brasília, Brasília, DF, Brazil.

出版信息

Virol J. 2013 Aug 15;10:262. doi: 10.1186/1743-422X-10-262.

Abstract

BACKGROUND

Garlic production is severely affected by virus infection, causing a decrease in productivity and quality. There are no virus-free cultivars and garlic-infecting viruses are difficult to purify, which make specific antibody production very laborious. Since high quality antisera against plant viruses are important tools for serological detection, we have developed a method to express and purify full-length plant virus coat proteins using baculovirus expression system and insects as bioreactors.

RESULTS

In this work, we have fused the full-length coat protein (cp) gene from the Garlic Mite-borne Filamentous Virus (GarMbFV) to the 3'-end of the Polyhedrin (polh) gene of the baculovirus Autographa californica multiple nucleopolyhedrovirus (AcMNPV). The recombinant baculovirus was amplified in insect cell culture and the virus was used to infect Spodoptera frugiperda larvae. Thus, the recombinant fused protein was easily purified from insect cadavers using sucrose gradient centrifugation and analyzed by Western Blotting. Interestingly, amorphous crystals were produced in the cytoplasm of cells infected with the recombinant virus containing the chimeric-protein gene but not in cells infected with the wild type and recombinant virus containing the hexa histidine tagged Polh. Moreover, the chimeric protein was used to immunize rats and generate antibodies against the target protein. The antiserum produced was able to detect plants infected with GarMbFV, which had been initially confirmed by RT-PCR.

CONCLUSIONS

The expression of a plant virus full-length coat protein fused to the baculovirus Polyhedrin in recombinant baculovirus-infected insects was shown to produce high amounts of the recombinant protein which was easily purified and efficiently used to generate specific antibodies. Therefore, this strategy can potentially be used for the development of plant virus diagnostic kits for those viruses that are difficult to purify, are present in low titers or are present in mix infection in their plant hosts.

摘要

背景

大蒜生产受到病毒感染的严重影响,导致生产力和质量下降。目前没有无病毒品种,且大蒜感染的病毒难以纯化,这使得特定抗体的产生非常费力。由于针对植物病毒的高质量抗血清是血清学检测的重要工具,我们开发了一种使用杆状病毒表达系统和昆虫作为生物反应器来表达和纯化全长植物病毒外壳蛋白的方法。

结果

在这项工作中,我们将大蒜螨传丝状病毒(GarMbFV)的全长外壳蛋白(cp)基因融合到杆状病毒 Autographa californica 多角体病毒(AcMNPV)的多角体蛋白(polh)基因的 3'-末端。重组杆状病毒在昆虫细胞培养中扩增,并使用该病毒感染草地贪夜蛾幼虫。因此,重组融合蛋白可通过蔗糖梯度离心从昆虫尸体中轻松纯化,并通过 Western Blotting 进行分析。有趣的是,在含有嵌合蛋白基因的重组病毒感染的细胞中产生了无定形晶体,但在感染野生型和含有六组氨酸标记的 Polh 的重组病毒的细胞中没有产生晶体。此外,用该嵌合蛋白免疫大鼠并产生针对靶蛋白的抗体。产生的抗血清能够检测到已通过 RT-PCR 初步确认感染 GarMbFV 的植物。

结论

在重组杆状病毒感染的昆虫中表达全长植物病毒外壳蛋白与杆状病毒多角体蛋白融合,可产生大量易于纯化的重组蛋白,并有效地用于产生特异性抗体。因此,该策略可用于开发那些难以纯化、滴度低或在植物宿主中存在混合感染的植物病毒诊断试剂盒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d891/3765376/8ddd436be67b/1743-422X-10-262-1.jpg

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