Laboratory for Pluripotent Stem Cell Studies, RIKEN Center for Developmental Biology, 2-2-3 Minatojima-minamimachi, Chuo-ku, Kobe 650-0047, Japan.
BMC Biotechnol. 2013 Aug 7;13:64. doi: 10.1186/1472-6750-13-64.
Stable expression of transgenes is an important technique to analyze gene function. Various drug resistance genes, such as neo, pac, hph, zeo, bsd, and hisD, have been equally used as selection markers to isolate a transfectant without considering their dose-dependent characters.
We quantitatively measured the variation of transgene expression levels in mouse embryonic stem (mES) cells, using a series of bi-cistronic expression vectors that contain Egfp expression cassette linked to each drug resistant gene via IRES with titration of the selective drugs, and found that the transgene expression levels achieved in each system with this vector design are in order, in which pac and zeo show sharp selection of transfectants with homogenously high expression levels. We also showed the importance of the choice of the drug selection system in gene-trap or gene targeting according to this order.
The results of the present study clearly demonstrated that an appropriate choice of the drug resistance gene(s) is critical for a proper design of the experimental strategy.
转基因的稳定表达是分析基因功能的重要技术。各种药物抗性基因,如 neo、pac、hph、zeo、bsd 和 hisD,已被同等用作选择标记物来分离转染细胞,而没有考虑它们的剂量依赖性特征。
我们使用一系列双顺反子表达载体,通过 IRES 将 Egfp 表达盒连接到每个药物抗性基因上,通过滴定选择药物,定量测量了小鼠胚胎干细胞(mES)中转基因表达水平的变化,并发现每个系统中的转基因表达水平都按照以下顺序排列,其中 pac 和 zeo 表现出对高表达水平的转染细胞的强烈选择。我们还根据这个顺序展示了在基因捕获或基因靶向中选择药物筛选系统的重要性。
本研究的结果清楚地表明,适当选择药物抗性基因对于实验策略的正确设计至关重要。