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表达绿色荧光蛋白报告基因的重组禽腺相关病毒的构建与鉴定

[Construction and identification of recombinant avian adeno-associated virus expressing GFP reporter gene].

作者信息

Wang An-ping, Sun Huai-chang, Wang Jian-ye, Wang Yong-juan, Yuan Wei-feng

机构信息

Veterinary Medicine College, Yangzhou University, Yangzhou 225009, Jiangsu, China.

出版信息

Bing Du Xue Bao. 2007 Jul;23(4):292-7.

Abstract

To generate recombinant avian adeno-associated virus (rAAAV) for gene transfer studies in avian cells, the recombinant plasmid containing the whole genome of AAAV was digested with restriction enzymes to remove the Rep and Cap genes, resulting in AAAV transfer vector pAITR. GFP-expressing cassette was amplified by PCR and inserted into the AAAV transfer vector. The Rep-Cap gene of AAAV amplified by high fidelity PCR was subcloned into eukaryotic expression vector pcDNA3, resulting in an AAAV helper vector pcDNA-ARC. The Rep and Cap genes amplified by high fidelity PCR were subcloned separately into the co-expression vector pVITRO2-mcs, resulting in another AAAV helper vector pVITRO2-ARC. Using calcium phosphate precipitation method, rAAAV-GFP was generated by co-transfecting AAV-293 cells with a cocktail of pAITR-GFP, pcDNA-ARC or pVITRO2-ARC, and adenovirus helper vector pHelper. The three structural proteins VP1, VP2 and VP3 of correct molecular masses were detected by SDS-PAGE and the GFP reporter gene was detected by PCR in purified rAAAV-GFP virions. Chicken embryonic fibroblast (CEF) cells and CEL cell line were transduced with the recombinant virus, the GFP-positive cells were easily observed under fluorescent microscope, expression of which lasted for at least two weeks. These data demonstrate that an efficient helper virus-free packaging system has been established for generating recombinant AAAV particles for gene transfer studies in avian cells and for development of recombinant vaccines against avian diseases.

摘要

为了构建用于禽类细胞基因转移研究的重组禽腺相关病毒(rAAAV),用限制性内切酶消化含有AAAV全基因组的重组质粒以去除Rep和Cap基因,从而得到AAAV转移载体pAITR。通过PCR扩增绿色荧光蛋白(GFP)表达盒并将其插入AAAV转移载体。通过高保真PCR扩增的AAAV的Rep-Cap基因亚克隆到真核表达载体pcDNA3中,得到AAAV辅助载体pcDNA-ARC。通过高保真PCR扩增的Rep和Cap基因分别亚克隆到共表达载体pVITRO2-mcs中,得到另一个AAAV辅助载体pVITRO2-ARC。采用磷酸钙沉淀法,将pAITR-GFP、pcDNA-ARC或pVITRO2-ARC与腺病毒辅助载体pHelper共转染AAV-293细胞,产生rAAAV-GFP。通过SDS-PAGE检测纯化的rAAAV-GFP病毒粒子中正确分子量的三种结构蛋白VP1、VP2和VP3,并通过PCR检测GFP报告基因。用重组病毒转导鸡胚成纤维细胞(CEF)和CEL细胞系,在荧光显微镜下很容易观察到GFP阳性细胞,其表达至少持续两周。这些数据表明,已建立了一种高效的无辅助病毒包装系统,用于产生用于禽类细胞基因转移研究的重组AAAV颗粒以及开发针对禽类疾病的重组疫苗。

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