首页> 外文期刊>Journal of Virological Methods >PK-15 cells transfected with porcine CD163 by PiggyBac transposon system are susceptible to porcine reproductive and respiratory syndrome virus.
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PK-15 cells transfected with porcine CD163 by PiggyBac transposon system are susceptible to porcine reproductive and respiratory syndrome virus.

机译:PiggyBac转座子系统用猪CD163转染的PK-15细胞易感染猪生殖和呼吸综合症病毒。

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摘要

The PiggyBac (PB) transposon system is a non-viral DNA-transfer system in which a transposase directs integration of a PB transposon into a TTAA site in the genome. Transgenic expression of porcine CD163 is necessary and sufficient to confer non-permissive cells susceptible to infection with porcine reproductive and respiratory syndrome virus (PRRSV). Such permissive cells can be used as a tool for PRRSV cellular receptor and other studies. One of the problems in studying PRRSV is the lack of porcine cell lines. In this study, efficient transfection and expression of porcine CD163 in PK-15 cells by PB transposition was demonstrated. The stable PK-15CD163 cell line was used in PRRSV infection assays. The data indicated that the average PB transgene copy number per genome was approximately 10. In line with previous literature the integration of PB into the genome had a bias toward the TTAA chromosomal site. The PK-15CD163 cell line was susceptible to infection by different PRRSV strains and the virus grew to similar titers compared to the Marc-145 cell line. This simplification of PK-15CD163 cell line production will provide a valuable tool to facilitate PRRSV cellular receptor studies and to accelerate existing vectors for PK-15 cell-based gene transfer and expression.
机译:PiggyBac(PB)转座子系统是一种非病毒DNA转移系统,其中转座酶指导PB转座子整合到基因组中的TTAA位点。猪CD163的转基因表达是必要的,并且足以赋予易受猪繁殖与呼吸综合征病毒(PRRSV)感染的非许可细胞。这样的允许细胞可以用作PRRSV细胞受体和其他研究的工具。研究PRRSV的问题之一是缺乏猪细胞系。在这项研究中,证明了通过PB转座有效转染和表达PK-15细胞中的猪CD163。稳定的PK-15 CD163 细胞系用于PRRSV感染检测。数据表明,每个基因组的PB转基因平均拷贝数约为10。与以前的文献一致,PB整合到基因组中对TTAA染色体位点有偏倚。 PK-15 CD163 细胞株易受不同PRRSV株感染,与Marc-145细胞株相比,该病毒的滴度达到相似。 PK-15 CD163 细胞系生产的这种简化将为促进PRRSV细胞受体研究和加速现有载体用于基于PK-15细胞的基因转移和表达提供有价值的工具。

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