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Development of a unique system for spatiotemporal and lineage-specific gene expression in mice

机译:小鼠时空和谱系特异性基因表达的独特系统的开发

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We have developed an advanced method for conditional gene expression in mice that integrates the Cre-mediated and tetracycline-dependent expression systems. An rtTA gene, preceded by a loxP-flanked STOP sequence, was inserted into the ROSA26 locus to create a R26STOPrtTA mouse strain. When the STOP sequence is excised by Cre-mediated recombination, the rtTA is expressed in the Cre-expressing cells and all of their derivatives. Therefore, cell type-, tissue-, or lineage-specific expression of rtTA is achieved by the use of an appropriate Cre transgenic strain. In mice also carrying a target gene under the control of the tetracycline response element, inducible expression of the target gene is temporally regulated by administration of doxycycline. Our results demonstrate that this universal system is uniquely suited for spatiotemporal and lineage-specific gene expression in an inducible fashion. Gene expression can be manipulated in specific cell types and lineages with a flexibility that is difficult to achieve with conventional methods.
机译:我们已经开发了一种在小鼠中进行条件基因表达的高级方法,该方法整合了Cre介导的和四环素依赖性表达系统。将一个带有loxP侧翼的STOP序列的rtTA基因插入ROSA26基因座中,以创建R26STOPrtTA小鼠品系。当通过Cre介导的重组切除STOP序列时,rtTA在Cre表达细胞及其所有衍生物中表达。因此,rtTA的细胞类型,组织或谱系特异性表达是通过使用合适的Cre转基因菌株实现的。在四环素应答元件的控制下还携带靶基因的小鼠中,通过强力霉素的给药在时间上调节靶基因的诱导型表达。我们的结果表明,该通用系统以诱导方式独特地适用于时空和谱系特异性基因表达。可以在特定细胞类型和谱系中操纵基因表达,其灵活性很难用传统方法实现。

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