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首页> 外文期刊>Biotechnology and Bioengineering >The PiggyBac transposon enhances the frequency of CHO stable cell line generation and yields recombinant lines with superior productivity and stability
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The PiggyBac transposon enhances the frequency of CHO stable cell line generation and yields recombinant lines with superior productivity and stability

机译:PiggyBac转座子可提高CHO稳定细胞系的产生频率,并产生具有卓越生产力和稳定性的重组系

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Generating stable, high-producing mammalian cell lines is a major bottleneck in the manufacture of recombinant therapeutic proteins. Conventional gene transfer methods for cell line generation rely on random plasmid integration, resulting in unpredictable and highly variable levels of transgene expression. As a consequence, a large number of stably transfected cells must be analyzed to recover a few high-producing clones. Here we present an alternative gene transfer method for cell line generation based on transgene integration mediated by the piggyBac (PB) transposon. Recombinant Chinese hamster ovary (CHO) cell lines expressing a tumor necrosis factor receptor:Fc fusion protein were generated either by PB transposition or by conventional transfection. Polyclonal populations and isolated clonal cell lines were characterized for the level and stability of transgene expression for up to 3 months in serum-free suspension culture. Pools of transposed cells produced up to fourfold more recombinant protein than did the pools generated by standard transfection. For clonal cell lines, the frequency of high-producers was greater following transposition as compared to standard transfection, and these clones had a higher volumetric productivity and a greater number of integrated transgenes than did those generated by standard transfection. In general, the volumetric productivity of the cell pools and individual cell lines generated by transposition was stable for up to 3 months in the absence of selection. Our results indicate that the PB transposon supports the generation of cell lines with high and stable transgene expression at an elevated frequency relative to conventional transfection. Thus, PB-mediated gene delivery is expected to reduce the extent of recombinant cell line screening.
机译:产生稳定,高产的哺乳动物细胞系是重组治疗性蛋白质生产中的主要瓶颈。用于细胞系生成的常规基因转移方法依赖于随机质粒整合,导致不可预测且高度可变的转基因表达水平。结果,必须分析大量稳定转染的细胞以回收一些高产克隆。在这里,我们介绍一种基于piggyBac(PB)转座子介导的转基因整合的细胞系生成的替代基因转移方法。通过PB转座或常规转染产生表达肿瘤坏死因子受体:Fc融合蛋白的重组中国仓鼠卵巢(CHO)细胞系。在无血清悬浮培养中,长达3个月的转基因表达水平和稳定性可表征多克隆种群和分离的克隆细胞系。转座细胞库产生的重组蛋白比标准转染产生的库多出四倍。对于克隆细胞系,与标准转染相比,转座后高产子的频率更高,并且这些克隆比标准转染产生的克隆具有更高的容积生产力和更多的整合转基因。通常,在不进行选择的情况下,通过转座产生的细胞池和单个细胞系的体积生产力可以稳定长达3个月。我们的结果表明,相对于常规转染,PB转座子支持具有高且稳定的转基因表达的细胞系的产生,且其频率升高。因此,预期PB介导的基因递送将减少重组细胞系筛选的程度。

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