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Cre reporter strains produced by targeted insertion of EYFP and ECFP into the ROSA26 locus

机译:通过将EYFP和ECFP定向插入ROSA26基因座而产生的Cre报告基因菌株

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Background Several Cre reporter strains of mice have been described, in which a lacZ gene is turned on in cells expressing Cre recombinase, as well as their daughter cells, following Cre-mediated excision of a loxP-flanked transcriptional "stop" sequence. These mice are useful for cell lineage tracing experiments as well as for monitoring the expression of Cre transgenes. The green fluorescent protein (GFP) and variants such as EYFP and ECFP offer an advantage over lacZ as a reporter, in that they can be easily visualized without recourse to the vital substrates required to visualize β-gal in living tissue. Results In view of the general utility of targeting the ubiquitously expressed ROSA26 locus, we constructed a generic ROSA26 targeting vector. We then generated two reporter lines of mice by inserting EYFP or ECFP cDNAs into the ROSA26 locus, preceded by a loxP-flanked stop sequence. These strains were tested by crossing them with transgenic strains expressing Cre in a ubiquitous (β-actin-Cre) or a cell-specific (Isl1-Cre and En1-Cre) pattern. The resulting EYFP or ECFP expression patterns indicated that the reporter strains function as faithful monitors of Cre activity. Conclusions In contrast to existing lacZ reporter lines, where lacZ expression cannot easily be detected in living tissue, the EYFP and ECFP reporter strains are useful for monitoring the expression of Cre and tracing the lineage of these cells and their descendants in cultured embryos or organs. The non-overlapping emission spectra of EYFP and ECFP make them ideal for double labeling studies in living tissues.
机译:背景技术已经描述了几种小鼠的Cre报告基因菌株,其中在Cre介导的loxP-侧翼转录“终止”序列的Cre介导的切除后,在表达Cre重组酶的细胞及其子细胞中开启了lacZ基因。这些小鼠可用于细胞谱系追踪实验以及监测Cre转基因的表达。绿色荧光蛋白(GFP)及其变体(例如EYFP和ECFP)作为报告基因比lacZ具有优势,因为它们可以很容易地可视化,而无需求助于可视化活组织中β-gal的重要底物。结果鉴于靶向普遍表达的ROSA26基因座的通用性,我们构建了通用ROSA26靶向载体。然后,我们通过将EYFP或ECFP cDNA插入ROSA26位点,然后插入loxP侧翼终止序列,从而生成了两个小鼠报告基因系。通过将它们与以普遍存在的(β-肌动蛋白-Cre)或细胞特异性(Isl1-Cre和En1-Cre)模式表达Cre的转基因菌株杂交来测试这些菌株。所得的EYFP或ECFP表达模式表明,报告株是Cre活性的忠实监测者。结论与现有的lacZ报告基因系不同,在活体组织中不易检测到lacZ表达,而EYFP和ECFP报告基因菌株可用于监测Cre的表达并追踪培养的胚胎或器官中这些细胞及其后代的谱系。 EYFP和ECFP的不重叠发射光谱使其成为活组织双重标记研究的理想选择。

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