Hong Yunhan, Chen Songlin, Gui Jianfang, Schartl Manfred
Department of Biological Sciences, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260, Singapore.
Transgenic Res. 2004 Feb;13(1):41-50. doi: 10.1023/b:trag.0000017172.71391.fa.
Embryonic stem (ES) cells provide a unique tool for introducing random or targeted genetic alterations, because it is possible that the desired, but extremely rare recombinant genotypes can be screened by drug selection. ES cell-mediated transgenesis has so far been limited to the mouse. In the fish medaka (Oryzias latipes) several ES cell lines have been made available. Here we report the optimized conditions for gene transfer and drug selection in the medaka ES cell line MES1 as a prelude for gene targeting in fish. MES1 cells gave rise to a moderate to high transfection efficiency by the calcium phosphate co-precipitation (5%), commercial reagents Fugene (11%), GeneJuice (21%) and electroporation (>30%). Transient gene transfer and CAT reporter assay revealed that several enhancers/promoters and their combinations including CMV, RSV and ST (the SV40 virus early gene enhancer linked to the thymidine kinase promoter) were suitable regulatory sequences to drive transgene expression in the MES1 cells. We show that neo, hyg or pac conferred resistance to G418, hygromycin or puromycin for positive selection, while the HSV-tk generated sensitivity to ganciclovir for negative selection. The positive-negative selection procedure that is widely used for gene targeting in mouse ES cells was found to be effective also in MES1 cells. Importantly, we demonstrate that MES1 cells after gene transfer and long-term drug selection retained the developmental pluripotency, as they were able to undergo induced differentiation in vitro and to contribute to various tissues and organs during chimeric embryogenesis.
胚胎干细胞(ES细胞)为引入随机或靶向基因改变提供了一种独特的工具,因为通过药物筛选有可能获得所需但极为罕见的重组基因型。迄今为止,ES细胞介导的转基因技术仅限于小鼠。在青鳉鱼(Oryzias latipes)中,已经获得了多个ES细胞系。在此,我们报告了青鳉ES细胞系MES1中基因转移和药物筛选的优化条件,作为鱼类基因靶向研究的前奏。MES1细胞通过磷酸钙共沉淀法(5%)、商业试剂Fugene(11%)、GeneJuice(21%)和电穿孔法(>30%)可产生中等至高的转染效率。瞬时基因转移和CAT报告基因检测表明,包括CMV、RSV和ST(与胸苷激酶启动子相连的SV40病毒早期基因增强子)在内的几种增强子/启动子及其组合是驱动MES1细胞中转基因表达的合适调控序列。我们发现,neo、hyg或pac赋予对G418、潮霉素或嘌呤霉素的抗性用于阳性筛选,而HSV-tk产生对更昔洛韦的敏感性用于阴性筛选。在小鼠ES细胞中广泛用于基因靶向的正负筛选程序在MES1细胞中也被证明是有效的。重要的是,我们证明基因转移和长期药物筛选后的MES1细胞保留了发育多能性,因为它们能够在体外进行诱导分化,并在嵌合胚胎发育过程中对各种组织和器官做出贡献。