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首页> 外文期刊>Cytotechnology >Development of a tightly-regulated tetracycline-dependent transcriptional activator and repressor co-expression system for the strong induction of transgene expression
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Development of a tightly-regulated tetracycline-dependent transcriptional activator and repressor co-expression system for the strong induction of transgene expression

机译:严格调控的四环素依赖性转录激活因子和阻遏物共表达系统的开发,可强烈诱导转基因表达

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摘要

The teteracycline (Tc)-dependent and -inducible transcriptional activator (rtTA) system has been used to express regulated transgene expression in vitro and in vivo. However, previous reports have demonstrated that, even in the absence of Tc, the rtTA binds weakly to the tetracycline response element (TRE), leading to a low level of background activity. In order to reduce the leaky gene expression induced by rtTA, we previously established a tightly regulated system (A-IRES-R system) that makes use of both the rtTA (A) and a Tc-dependent repressor (TetR-Kruppel-associated box; KRAB) (R). In addition, others have described a transactivator rtTA2-M2 (M2) that displays higher sensitivity to Dox than rtTA. In this study, to further develop the A-IRES-R system, we generated a derivative Tc system (M2-IRES-R system) that co-expresses both rtTA-M2 and TetR-KRAB from a single vector. We show that compared to the A-IRES-R system, the M2-IRES-R system leads to a greater level of induced TRE-mediated transcription in the presence of doxycycline (Dox) and yet displays a similar level of basal TRE-mediated transcription in the absence of Dox. Furthermore, the M2-IRES-R system also displays less leaky gene expression in the absence of Dox compared to rtTA-M2 and rtTA systems. Taken together, our results suggest that the M2-IRES-R system enables to tightly regulate and highly induce the expression of transgene compared to other systems.
机译:四环素(Tc)依赖性和诱导型转录激活剂(rtTA)系统已用于在体外和体内表达调节的转基因表达。但是,以前的报道表明,即使在没有Tc的情况下,rtTA也会与四环素反应元件(TRE)弱结合,从而导致低水平的背景活性。为了减少由rtTA诱导的基因表达泄漏,我们先前建立了一个严格调节的系统(A-IRES-R系统),该系统同时使用rtTA(A)和Tc依赖性阻遏物(TetR-Kruppel相关框) ; KRAB)(R)。另外,其他人已经描述了反式激活剂rtTA2-M2(M2),其对Dox的敏感性比rtTA高。在这项研究中,为了进一步开发A-IRES-R系统,我们生成了一个衍生的Tc系统(M2-IRES-R系统),该系统从单个载体共表达rtTA-M2和TetR-KRAB。我们显示,与A-IRES-R系统相比,M2-IRES-R系统在强力霉素(Dox)存在的情况下导致诱导的TRE介导的转录水平更高,而基础TRE介导的基础水平却相似在没有Dox的情况下进行转录。此外,与rtTA-M2和rtTA系统相比,在没有Dox的情况下,M2-IRES-R系统还显示出较少的泄漏基因表达。两者合计,我们的结果表明,与其他系统相比,M2-IRES-R系统能够紧密调节并高度诱导转基因的表达。

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