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利用昆虫细胞/杆状病毒表达系统高效生产禽腺相关病毒载体。

Efficient production of an avian adeno-associated virus vector using insect cell/baculovirus expression system.

作者信息

Wang Anping, Wang Yongjuan, Wu Shuang, Zuo Weiyong, Guo Changming, Hong Weiming, Zhu Shanyuan

机构信息

Jiangsu Agri-animal Husbandry Vocational College, Jiangsu Key Laboratory for High-Tech Research and Development of Veterinary Biopharmaceuticals, Taizhou, 225300, China.

Jiangsu Agri-animal Husbandry Vocational College, Jiangsu Key Laboratory for High-Tech Research and Development of Veterinary Biopharmaceuticals, Taizhou, 225300, China.

出版信息

J Virol Methods. 2017 Feb;240:26-31. doi: 10.1016/j.jviromet.2016.11.005. Epub 2016 Nov 17.

Abstract

Recombinant avian adeno-associated virus (rAAAV) is a promising gene transfer vector for avian cells. Although rAAAV can be produced by co-transfection of HEK293 cells with three plasmids, both scalability and productivity of the transient transfection method can not meet the demand for large-scale in vivo experiments. In this study, a scalable rAAAV production method was established by using insect cell/baculovirus expression system. Three recombinant baculoviruses, namely BacARep, BacAVP and BacAGFP, were generated by transfection of Sf9 cells with the three plasmids expressing AAAV Rep genes, modified VP gene or the inverted terminal repeats-flanked green fluorescent protein (GFP) gene. After demonstration of the correct expression of AAAV genes, rAAAV-GFP was produced by triple infection of insect cells or triple transfection of HEK293 cells for comparison purpose. Electron microscopy revealed the formation of typical AAAV particles in the insect cells. Western blotting showed the correct assembly of rAAAV particles with a VP protein ratio similar to that of AAAV. Quantitative PCR showed that the insect cell-produced rAAAV yield was almost 25-fold higher than that produced by HEK293 cells. Fluorescent microscopy showed that the insect cell-produced rAAAV could transfer GFP reporter gene into two avian cell types with similar transfer efficiency to that of HEK293 cell-produced rAAAV. These data suggest that insect cell/baculovirus expression system could be used for scalable production of rAAAV, and the viral vector produced could be used as the gene transfer vehicle for avian cells.

摘要

重组禽腺相关病毒(rAAAV)是一种用于禽细胞的很有前景的基因转移载体。尽管rAAAV可通过将HEK293细胞与三种质粒共转染来生产,但瞬时转染方法的可扩展性和产量均无法满足大规模体内实验的需求。在本研究中,通过使用昆虫细胞/杆状病毒表达系统建立了一种可扩展的rAAAV生产方法。通过用表达AAAV Rep基因、修饰的VP基因或侧翼带有反向末端重复序列的绿色荧光蛋白(GFP)基因的三种质粒转染Sf9细胞,产生了三种重组杆状病毒,即BacARep、BacAVP和BacAGFP。在证实AAAV基因正确表达后,为作比较,通过昆虫细胞三重感染或HEK293细胞三重转染来生产rAAAV-GFP。电子显微镜显示在昆虫细胞中形成了典型的AAAV颗粒。蛋白质免疫印迹显示rAAAV颗粒正确组装,VP蛋白比例与AAAV相似。定量PCR显示昆虫细胞产生的rAAAV产量比HEK293细胞产生的产量高近25倍。荧光显微镜显示昆虫细胞产生的rAAAV可将GFP报告基因转移到两种禽细胞类型中,转移效率与HEK293细胞产生的rAAAV相似。这些数据表明昆虫细胞/杆状病毒表达系统可用于rAAAV的可扩展生产,并且所产生的病毒载体可作为禽细胞的基因转移载体。

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