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A rapid and efficient method to express target genes in mammaliar cells by baculovirus

机译:杆状病毒在哺乳动物细胞中快速高效表达靶基因的方法

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AIM: To investigate the modification of baculovirus vector and the feasibility of delivering exogenous genes into mammalian cells with the culture supernatant of Spodoptera frugiperta (Sf9) cells infected by recombinant baculoviruses. METHODS: Two recombinant baculoviruses (BacV-CMV-EGFPA, BacV-CMV-EGFPB) containing CMV-EGFP expression cassette were constructed. HepG2 cells were directly incubated with the culture supernatant of Sf9 cells infected by recombinant baculoviruses, and reporter gene transfer and expression efficiencies were analyzed by flow cytometry (FCM). The optimal transduction conditions were investigated by FCM assay in HepG2 cells. Gene-transfer and expression efficiencies in HepG2 or CV1 cells by baculovirus vectors were compared with lipofectAMINE, recombinant retrovirus and vaccinia virus expression systems. Twenty different mammalian cell lines were used to investigate the feasibility of delivering exogenous genes into different mammalian cells with the culture supernatant of infected Sf9 cells. RESULTS: CMV promoter could directly express reporter genes in Sf9 cells with a relatively low efficiency. Target cells incubated with the 1:1 diluted culture supernatant (moi=50) for 12 h at 37℃ could achieve the highest transduction and expression efficiencies with least impairment to cell viability. Under similar conditions the baculovirus vector could achieve the highest gene-transfer and expression efficiency than lipofectAMINE, recombinant retrovirus and vaccinia virus expression systems. Most mammalian cell lines could be transduced with recombinant baculovirus. In primate adherent culture cells the recombinant baculovirus could arrive the highest infection and expression efficiencies, but it was not very satisfactory in the cell lines from mice and suspended culture cells. CONCLUSION: Mammalian cells incubated with the culture supernatant of infected Sf9 cells could serve as a very convenient way for rapid and efficient expression of foreign genes in mammalian cells, but it might be more suitable for primate adherent culture cells.
机译:目的:利用重组杆状病毒感染的斜纹夜蛾(Sf9)细胞培养上清液,研究杆状病毒载体的修饰以及将外源基因导入哺乳动物细胞的可行性。方法:构建含有CMV-EGFP表达盒的两种重组杆状病毒(BacV-CMV-EGFPA,BacV-CMV-EGFPB)。将HepG2细胞与重组杆状病毒感染的Sf9细胞的培养上清液直接温育,并通过流式细胞术(FCM)分析报告基因的转移和表达效率。通过FCM法检测HepG2细胞的最佳转导条件。将杆状病毒载体在HepG2或CV1细胞中的基因转移和表达效率与lipofectAMINE,重组逆转录病毒和牛痘病毒表达系统进行了比较。使用二十种不同的哺乳动物细胞系来研究将外源基因与感染的Sf9细胞的培养上清液一起递送到不同哺乳动物细胞中的可行性。结果:CMV启动子可以在Sf9细胞中直接表达报道基因,效率相对较低。将目标细胞与1:1稀释的培养上清液(moi = 50)在37℃孵育12 h可获得最高的转导和表达效率,对细胞活力的损害最小。在类似条件下,杆状病毒载体可比lipofectAMINE,重组逆转录病毒和牛痘病毒表达系统获得最高的基因转移和表达效率。大多数哺乳动物细胞系可以用重组杆状病毒转导。在灵长类贴壁培养细胞中,重组杆状病毒可以达到最高的感染和表达效率,但在小鼠和悬浮培养细胞的细胞系中却不能令人满意。结论:将哺乳动物细胞与感染的Sf9细胞的培养上清液一起孵育可作为在哺乳动物细胞中快速有效表达外源基因的便捷方法,但可能更适合于灵长类贴壁培养细胞。

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