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胚胎干细胞和表达不同绿色荧光蛋白变体的小鼠,用于在单个动物体内进行多种非侵入性报告基因的应用。

Embryonic stem cells and mice expressing different GFP variants for multiple non-invasive reporter usage within a single animal.

作者信息

Hadjantonakis Anna-Katerina, Macmaster Suzanne, Nagy Andras

机构信息

Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Canada.

出版信息

BMC Biotechnol. 2002 Jun 11;2:11. doi: 10.1186/1472-6750-2-11.

Abstract

BACKGROUND

Non-invasive autofluorescent reporters have revolutionized lineage labeling in an array of different organisms. In recent years green fluorescent protein (GFP) from the bioluminescent jellyfish Aequoria Victoria has gained popularity in mouse transgenic and gene targeting regimes 1. It offers several advantages over conventional gene-based reporters, such as lacZ and alkaline phosphatase, in that its visualization does not require a chromogenic substrate and can be realized in vivo. We have previously demonstrated the utility and developmental neutrality of enhanced green fluorescent protein (EGFP) in embryonic stem (ES) cells and mice 2.

RESULTS

In this study we have used embryonic stem (ES) cell-mediated transgenesis to test the enhanced cyan fluorescent protein (ECFP) and enhanced yellow fluorescent protein (EYFP), two mutant and spectrally distinct color variants of wild type (wt) GFP. We have also tested DsRed1, the novel red fluorescent protein reporter recently cloned from the Discostoma coral by virtue of its homology to GFP. To this end, we have established lines of ES cells together with viable and fertile mice having widespread expression of either the ECFP or EYFP GFP-variant reporters. However, we were unable to generate equivalent DsRed1 lines, suggesting that DsRed1 is not developmentally neutral or that transgene expression cannot be sustained constitutively. Balanced (diploid <-> diploid) and polarized (tetraploid <-> diploid) chimeras comprising combinations of the ECFP and EYFP ES cells and/or embryos, demonstrate that populations of cells expressing each individual reporter can be distinguished within a single animal.

CONCLUSIONS

GFP variant reporters are unique in allowing non-invasive multi-spectral visualization in live samples. The ECFP and EYFP-expressing transgenic ES cells and mice that we have generated provide sources of cells and tissues for combinatorial, double-tagged recombination experiments, chimeras or transplantations.

摘要

背景

非侵入性自发荧光报告基因彻底改变了一系列不同生物体中的谱系标记。近年来,来自生物发光水母维多利亚多管水母的绿色荧光蛋白(GFP)在小鼠转基因和基因靶向研究中受到广泛关注。与传统的基于基因的报告基因(如lacZ和碱性磷酸酶)相比,它具有几个优点,即其可视化不需要显色底物,并且可以在体内实现。我们之前已经证明了增强型绿色荧光蛋白(EGFP)在胚胎干细胞(ES)和小鼠中的实用性和发育中性。

结果

在本研究中,我们使用胚胎干细胞介导的转基因技术来测试增强型青色荧光蛋白(ECFP)和增强型黄色荧光蛋白(EYFP),它们是野生型(wt)GFP的两种突变且光谱不同的颜色变体。我们还测试了DsRed1,这是最近从盘状珊瑚中克隆的新型红色荧光蛋白报告基因,因其与GFP的同源性。为此,我们建立了ES细胞系以及具有广泛表达ECFP或EYFP GFP变体报告基因的存活且可育的小鼠。然而,我们无法生成等效的DsRed1系,这表明DsRed1不是发育中性的,或者转基因表达不能持续组成性维持。由ECFP和EYFP ES细胞和/或胚胎组合而成的平衡(二倍体<->二倍体)和极化(四倍体<->二倍体)嵌合体表明,在单个动物体内可以区分表达每个单独报告基因的细胞群体。

结论

GFP变体报告基因在允许对活样本进行非侵入性多光谱可视化方面具有独特性。我们生成的表达ECFP和EYFP的转基因ES细胞和小鼠为组合、双标记重组实验、嵌合体或移植提供了细胞和组织来源。

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