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一种在植物中快速生产异源多聚体蛋白复合物的方法:组装保护性蓝舌病毒样颗粒。

A method for rapid production of heteromultimeric protein complexes in plants: assembly of protective bluetongue virus-like particles.

机构信息

Department of Biological Chemistry, John Innes Centre, Norwich, UK.

出版信息

Plant Biotechnol J. 2013 Sep;11(7):839-46. doi: 10.1111/pbi.12076. Epub 2013 May 6.

Abstract

Plant expression systems based on nonreplicating virus-based vectors can be used for the simultaneous expression of multiple genes within the same cell. They therefore have great potential for the production of heteromultimeric protein complexes. This work describes the efficient plant-based production and assembly of Bluetongue virus-like particles (VLPs), requiring the simultaneous expression of four distinct proteins in varying amounts. Such particles have the potential to serve as a safe and effective vaccine against Bluetongue virus (BTV), which causes high mortality rates in ruminants and thus has a severe effect on the livestock trade. Here, VLPs produced and assembled in Nicotiana benthamiana using the cowpea mosaic virus-based HyperTrans (CPMV-HT) and associated pEAQ plant transient expression vector system were shown to elicit a strong antibody response in sheep. Furthermore, they provided protective immunity against a challenge with a South African BTV-8 field isolate. The results show that transient expression can be used to produce immunologically relevant complex heteromultimeric structures in plants in a matter of days. The results have implications beyond the realm of veterinary vaccines and could be applied to the production of VLPs for human use or the coexpression of multiple enzymes for the manipulation of metabolic pathways.

摘要

基于非复制型病毒载体的植物表达系统可用于在同一细胞内同时表达多个基因。因此,它们在生产异源多聚体蛋白复合物方面具有巨大的潜力。本工作描述了蓝舌病病毒样颗粒(VLPs)的高效植物生产和组装,需要在不同的量同时表达四种不同的蛋白质。这些颗粒有可能成为针对蓝舌病病毒(BTV)的安全有效疫苗,BTV 会导致反刍动物高死亡率,因此对畜牧业贸易有严重影响。在此,使用基于豇豆花叶病毒的 HyperTrans(CPMV-HT)和相关的 pEAQ 植物瞬时表达载体系统在本氏烟中生产和组装的 VLPs 在绵羊中引发了强烈的抗体反应。此外,它们还提供了针对南非 BTV-8 田间分离株的保护免疫。结果表明,瞬时表达可在数天内在植物中产生具有免疫相关性的复杂异源多聚体结构。这些结果不仅对兽医疫苗具有重要意义,而且可应用于生产用于人类使用的 VLPs 或用于代谢途径操纵的多种酶的共表达。

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