Pfannkuche Kurt, Wunderlich Frank Thomas, Doss Michael Xavier, Spitkovsky Dimitry, Reppel Michael, Sachinidis Agapios, Hescheler Jürgen
Institute for Neurophysiology, Robert Koch Str. 39, 50931 Cologne, Germany.
Nat Protoc. 2008;3(9):1510-26. doi: 10.1038/nprot.2008.143.
Here we describe the generation of a double-fluorescent Cre/loxP indicator system. This protocol involves (i) all cloning steps to generate the plasmid vector (3-5 months); (ii) a guide to prepare high-efficiency transformation competent E. coli; (iii) generation of double-fluorescent reporter cell lines (3-4 weeks); and (iv) the functional testing of the indicator cell lines by application of cell-permeable Cre recombinase. The indicator is designed to monitor recombination events by switching the fluorescence light from red to green. The red fluorescence, indicating the nonrecombined state, is accompanied by the expression of a resistance gene against the antibiotic blasticidin. Appearance of green fluorescence concomitantly with the activation of puromycin-acetyltransferase monitors the recombination of the indicator construct by the Cre recombinase. In summary, we have developed a plasmid vector allowing a fast, stable and straightforward generation of transgenic clones. The expression of red fluorescent protein enables the selection of positive clones upon transfection and significantly shortens the time for identification of stable clones. This feature and the option to select for recombined cells by puromycin application are advantages compared with other alternative methods. Moreover, we developed a method utilizing cell-permeable Cre protein to validate the transgenic clones. Ultimately, this powerful methodology facilitates Cre/loxP-based applications such as cell lineage tracking or monitoring of cell fusion.
在此,我们描述了一种双荧光Cre/loxP指示系统的构建方法。该方案包括:(i)生成质粒载体的所有克隆步骤(3 - 5个月);(ii)制备高效转化感受态大肠杆菌的指南;(iii)生成双荧光报告细胞系(3 - 4周);以及(iv)通过应用细胞可渗透的Cre重组酶对指示细胞系进行功能测试。该指示系统旨在通过将荧光从红色切换为绿色来监测重组事件。红色荧光表明未重组状态,同时伴有对杀稻瘟菌素抗生素的抗性基因表达。绿色荧光与嘌呤霉素乙酰转移酶的激活同时出现,可监测Cre重组酶对指示构建体的重组。总之,我们开发了一种质粒载体,可快速、稳定且直接地生成转基因克隆。红色荧光蛋白的表达使得在转染后能够选择阳性克隆,并显著缩短鉴定稳定克隆的时间。与其他替代方法相比,这一特性以及通过嘌呤霉素选择重组细胞的选项具有优势。此外,我们开发了一种利用细胞可渗透的Cre蛋白来验证转基因克隆的方法。最终,这种强大的方法学促进了基于Cre/loxP的应用,如细胞谱系追踪或细胞融合监测。