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使用ROSA26-iM2-GFP基因敲入小鼠品系进行四环素控制的转基因激活,可通过绿色荧光蛋白(GFP)监测多西环素(DOX)调控的转基因表达。

Tetracycline-controlled transgene activation using the ROSA26-iM2-GFP knock-in mouse strain permits GFP monitoring of DOX-regulated transgene-expression.

作者信息

Wörtge Simone, Eshkind Leonid, Cabezas-Wallscheid Nina, Lakaye Bernard, Kim Jinhyun, Heck Rosario, Abassi Yasmin, Diken Mustafa, Sprengel Rolf, Bockamp Ernesto

机构信息

Max Planck Institute for Medical Research, Jahnstrasse 29, 69120 Heidelberg, Germany.

出版信息

BMC Dev Biol. 2010 Sep 3;10:95. doi: 10.1186/1471-213X-10-95.

Abstract

BACKGROUND

Conditional gene activation is an efficient strategy for studying gene function in genetically modified animals. Among the presently available gene switches, the tetracycline-regulated system has attracted considerable interest because of its unique potential for reversible and adjustable gene regulation.

RESULTS

To investigate whether the ubiquitously expressed Gt(ROSA)26Sor locus enables uniform DOX-controlled gene expression, we inserted the improved tetracycline-regulated transcription activator iM2 together with an iM2 dependent GFP gene into the Gt(ROSA)26Sor locus, using gene targeting to generate ROSA26-iM2-GFP (R26t1Δ) mice. Despite the presence of ROSA26 promoter driven iM2, R26t1Δ mice showed very sparse DOX-activated expression of different iM2-responsive reporter genes in the brain, mosaic expression in peripheral tissues and more prominent expression in erythroid, myeloid and lymphoid lineages, in hematopoietic stem and progenitor cells and in olfactory neurons.

CONCLUSIONS

The finding that gene regulation by the DOX-activated transcriptional factor iM2 in the Gt(ROSA)26Sor locus has its limitations is of importance for future experimental strategies involving transgene activation from the endogenous ROSA26 promoter. Furthermore, our ROSA26-iM2 knock-in mouse model (R26t1Δ) represents a useful tool for implementing gene function in vivo especially under circumstances requiring the side-by-side comparison of gene manipulated and wild type cells. Since the ROSA26-iM2 mouse allows mosaic gene activation in peripheral tissues and haematopoietic cells, this model will be very useful for uncovering previously unknown or unsuspected phenotypes.

摘要

背景

条件性基因激活是研究转基因动物基因功能的有效策略。在目前可用的基因开关中,四环素调控系统因其在可逆和可调基因调控方面的独特潜力而备受关注。

结果

为了研究普遍表达的Gt(ROSA)26Sor位点是否能实现均匀的强力霉素(DOX)控制的基因表达,我们将改进的四环素调控转录激活因子iM2与一个依赖iM2的绿色荧光蛋白(GFP)基因插入到Gt(ROSA)26Sor位点,通过基因打靶产生ROSA26-iM2-GFP(R26t1Δ)小鼠。尽管存在ROSA26启动子驱动的iM2,但R26t1Δ小鼠在大脑中不同iM2反应性报告基因的DOX激活表达非常稀疏,在外周组织中呈镶嵌性表达,在红系、髓系和淋巴系谱系、造血干细胞和祖细胞以及嗅觉神经元中表达更明显。

结论

在Gt(ROSA)26Sor位点由DOX激活的转录因子iM2进行基因调控存在局限性这一发现,对于未来涉及从内源性ROSA26启动子激活转基因的实验策略具有重要意义。此外,我们的ROSA26-iM2基因敲入小鼠模型(R26t1Δ)是在体内实现基因功能的有用工具,特别是在需要对基因操作细胞和野生型细胞进行并排比较的情况下。由于ROSA26-iM2小鼠在外周组织和造血细胞中允许镶嵌性基因激活,该模型对于揭示以前未知或未被怀疑的表型将非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d84/2944160/696530476d96/1471-213X-10-95-1.jpg

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