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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A modified tetracycline-regulated system provides autoregulatory, inducible gene expression in cultured cells and transgenic mice.
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A modified tetracycline-regulated system provides autoregulatory, inducible gene expression in cultured cells and transgenic mice.

机译:改良的四环素调节系统可在培养的细胞和转基因小鼠中提供自动调节的诱导型基因表达。

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摘要

A system for tetracycline-regulated inducible gene expression was described recently which relies on constitutive expression of a tetracycline-controlled transactivator (tTA) fusion protein combining the tetracycline repressor and the transcriptional activation domain of VP16 [Gossen, M. & Bujard, H. (1992) Proc. Natl. Acad. Sci. USA 89, 5547-5551]. This system yielded only low levels of transactivator protein, probably because tTA is toxic. To avoid this difficulty, we placed the tTA gene under the control of the inducible promoter to which tTA binds, making expression of tTA itself inducible and autoregulatory. When used to drive expression of the recombination activating genes 1 and 2 (RAG-1 and RAG-2), the autoregulatory system yielded both substantially higher levels of variable (diversity) joining [V(D)J] recombination activity (70-fold on average) and inducible expression in a much larger fraction of transfected cells (autoregulatory, 90%, vs. constitutive, 18%). In addition, this system allowedthe creation of transgenic mice in which expression of a luciferase transgene was inducible tens to hundreds of times the basal levels in most tissues examined. Induced levels of expression were highest in thymus and lung and appear to be substantially higher than in previously reported inducible luciferase transgenic mice created with the constitutive system. With the modified system, inducible transactivator mRNA and protein were easily detected in cell lines by RNA and Western blotting, and transactivator mRNA was detected by RNA blotting in some tissues of transgenic mice. This autoregulatory system represents an improved strategy for tetracycline-regulated gene expression both in cultured cells and in transgenic animals.
机译:最近描述了一种用于四环素调节的诱导型基因表达的系统,该系统依赖于四环素控制的反式激活子(tTA)融合蛋白的组成性表达,该融合蛋白结合了四环素阻遏物和VP16的转录激活域[Gossen,M.&Bujard,H.( 1992)Proc。 Natl。学院科学美国89,5547-5551]。该系统仅产生低水平的反式激活蛋白,可能是因为tTA有毒。为避免这种困难,我们将tTA基因置于与tTA结合的诱导型启动子的控制下,从而使tTA本身的表达具有诱导性和自我调节作用。当用于驱动重组激活基因1和2(RAG-1和RAG-2)的表达时,自动调节系统产生的可变(多样性)连接[V(D)J]重组活性均显着提高(70倍)平均而言)和可诱导表达在更大比例的转染细胞中(自调控,占90%,而组成型,占18%)。另外,该系统允许创建转基因小鼠,其中可诱导的萤光素酶转基因表达在大多数检查的组织中是基础水平的数十倍至数百倍。诱导的表达水平在胸腺和肺中最高,并且似乎大大高于先前报道的用组成型系统创建的诱导型荧光素酶转基因小鼠。使用改进的系统,可通过RNA和Western印迹在细胞系中轻松检测诱导型反式激活因子mRNA和蛋白,而在RNA印迹法中在转基因小鼠的某些组织中可检测反式激活因子mRNA。这种自动调节系统代表了在培养细胞和转基因动物中四环素调节基因表达的改进策略。

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