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A novel fusion protein that functions as an enhanced green fluorescent protein reporter and a tetracycline-controlled transcriptional activator

机译:一种新型融合蛋白,具有增强的绿色荧光蛋白报道分子和四环素控制的转录激活因子的功能

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摘要

Binary expression systems are widely employed to analyze gene function in vivo using transgenic organisms. The tetracycline-off (Tet-Off) system, which is a binary expression system that uses a tetracycline-controlled transactivator protein (tTA) and its tetracycline operator sequence (tetO) binding site, was developed as a method for temporally controlling gene expression. To facilitate the use of the Tet-Off system in animal species other than the model organisms that are widely used for geneticanalysis, we constructed two different fusion proteins containing enhanced green fluorescent protein (EGFP) as the reporter gene and tTA as the transactivator, in different configurations. We assessed the utility of these fusion proteins designated as tTA-EGFP and EGFP-tTA in transgenic fruit flies. We showed that, although EGFP of both fusion proteins was efficiently fluoresced, transcriptional activation occurred only by the tTA-EGFP fusion protein. Furthermore, tetracycline (Tc) and doxycycline (Dox)both effectively inactivated tTA-EGFP, repressing gene expression under tetO control in a concentration-dependent manner. Additionally, the removal of Tc or Dox from the diet can recover the transactivator activity of tTA-EGFP in a concentration- and time-dependent manner. The tTA-EGFP fusion protein will therefore be useful in the analysis of gene function in a wide range of animal species.
机译:二元表达系统被广泛用于使用转基因生物体内分析基因功能。开发了四环素脱(Tet-Off)系统,它是一种使用四环素控制的反式激活蛋白(tTA)及其四环素操纵子序列(tetO)结合位点的二元表达系统,是一种暂时控制基因表达的方法。为了促进Tet-Off系统在广泛用于遗传分析的模型生物以外的动物物种中的应用,我们构建了两种不同的融合蛋白,分别包含增强的绿色荧光蛋白(EGFP)作为报告基因和tTA作为反式激活因子。不同的配置。我们评估了这些融合蛋白在转基因果蝇中的实用性,分别称为tTA-EGFP和EGFP-tTA。我们显示,尽管两种融合蛋白的EGFP均能有效发出荧光,但转录激活仅通过tTA-EGFP融合蛋白发生。此外,四环素(Tc)和强力霉素(Dox)均可有效灭活tTA-EGFP,在tetO控制下以浓度依赖性方式抑制基因表达。另外,从饮食中去除Tc或Dox可以以浓度和时间依赖性方式恢复tTA-EGFP的反式激活因子活性。因此,tTA-EGFP融合蛋白将可用于分析各种动物的基因功能。

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