Department of Biochemistry, Aichi Medical University School of Medicine, Nagakute, Aichi, Japan.
Biotechniques. 2012 Sep;53(3):141-52. doi: 10.2144/0000113911.
Gene targeting in a broad range of human somatic cell lines has been hampered by inefficient homologous recombination. To improve this technology and facilitate its widespread application, it is critical to first have a robust and efficient research system for measuring gene targeting efficiency. Here, using a fusion gene consisting of hygromycin B phosphotransferase and 3'-truncated enhanced GFP (HygR-5' EGFP) as a reporter gene, we created a molecular system monitoring the ratio of homologous to random integration (H/R ratio) of targeting vectors into the genome. Cell clones transduced with a reporter vector containing HygR-5' EGFP were efficiently established from two human somatic cell lines. Established HygR-5' EGFP reporter clones retained their capacity to monitor gene targeting efficiency for a longer duration than a conventional reporter system using an unfused 5' EGFP gene. With the HygR-5' EGFP reporter system, we reproduced previous findings of gene targeting frequency being up-regulated by the use of an adeno-associated viral (AAV) backbone, a promoter-trap system, or a longer homology arm in a targeting vector, suggesting that this system accurately monitors H/R ratio. Thus, our HygR-5' EGFP reporter system will assist in the development of an efficient AAV-based gene targeting technology.
在广泛的人类体细胞系中进行基因靶向一直受到同源重组效率低下的阻碍。为了改进这项技术并促进其广泛应用,首先需要建立一个强大而高效的研究系统来测量基因靶向效率,这一点至关重要。在这里,我们使用由潮霉素 B 磷酸转移酶和 3' 截短增强型 GFP(HygR-5' EGFP)组成的融合基因作为报告基因,创建了一个分子系统,用于监测靶向载体在基因组中同源整合与随机整合的比率(H/R 比率)。从两种人类体细胞系中成功建立了转导报告载体的 HygR-5' EGFP 细胞克隆。建立的 HygR-5' EGFP 报告克隆保留了监测基因靶向效率的能力,其持续时间比使用未融合的 5' EGFP 基因的传统报告系统更长。使用 HygR-5' EGFP 报告系统,我们重现了之前的研究结果,即使用腺相关病毒(AAV)骨架、启动子陷阱系统或更长的同源臂在靶向载体中可以上调基因靶向频率,表明该系统能够准确监测 H/R 比率。因此,我们的 HygR-5' EGFP 报告系统将有助于开发高效的基于 AAV 的基因靶向技术。