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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Meganuclease-driven targeted integration in CHO-K1 cells for the fast generation of HTS-compatible cell-based assays
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Meganuclease-driven targeted integration in CHO-K1 cells for the fast generation of HTS-compatible cell-based assays

机译:大范围核酸酶驱动的CHO-K1细胞靶向整合,可快速生成基于HTS的细胞检测

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摘要

The development of cell-based assays for high-throughput screening (HTS) approaches often requires the generation of stable transformant cell lines. However, these cell lines are essentially created by random integration of a gene of interest (GOI) with no control over the level and stability of gene expression. The authors developed a targeted integration system in Chinese hamster ovary (CHO) cells, called the cellular genome positioning system (cGPS), based on the stimulation of homologous gene targeting by meganucleases. Five different GOIs were knocked in at the same locus in cGPS CHO-K1 cells. Further characterization revealed that the cGPS CHO-K1 system is more rapid (2-week protocol), efficient (all selected clones expressed the GOI), reproducible (GOI expression level variation of 12%), and stable over time (no change in GOI expression after 23 weeks of culture) than classical random integration. Moreover, in all cGPS CHO-K1 targeted clones, the recombinant protein was biologically active and its properties similar to the endogenous protein. This fast and robust method opens the door for creating large collections of cell lines of better quality and expressing therapeutically relevant GOIs at physiological levels, thereby enhancing the potential scope of HTS.
机译:用于高通量筛选(HTS)方法的基于细胞的测定方法的开发通常需要生成稳定的转化细胞系。但是,这些细胞系实质上是通过随机整合目标基因(GOI)而无法控制基因表达的水平和稳定性来创建的。作者基于大范围核酸酶刺激同源基因的靶向作用,在中国仓鼠卵巢(CHO)细胞中开发了一种靶向整合系统,称为细胞基因组定位系统(cGPS)。在cGPS CHO-K1细胞的同一基因座上敲入了五个不同的GOI。进一步的特征表明,cGPS CHO-K1系统更快(2周方案),高效(所有选择的克隆均表达GOI),可再现(GOI表达水平变化为12%)且随时间稳定(GOI无变化)培养23周后的表达)比经典随机整合。此外,在所有cGPS CHO-K1靶向克隆中,重组蛋白具有生物活性,其特性与内源蛋白相似。这种快速而强大的方法为创建大量质量更好的细胞系并在生理水平表达治疗相关的GOI开辟了大门,从而扩大了HTS的潜在范围。

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