首页> 外文期刊>Molecular and Cellular Biology >A combination of derepression of the lac operator-repressor system with positive induction by glucocorticoid and metal ions provides a high-level-inducible gene expression system based on the human metallothionein-IIA promoter.
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A combination of derepression of the lac operator-repressor system with positive induction by glucocorticoid and metal ions provides a high-level-inducible gene expression system based on the human metallothionein-IIA promoter.

机译:lac操纵子-阻遏物系统的抑制与糖皮质激素和金属离子的正诱导相结合,可提供基于人金属硫蛋白-IIA启动子的高水平可诱导基因表达系统。

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We and others have introduced the use of the lac operator-repressor system as a method for providing inducible gene expression for gene transfer experiments in animal cells (M. C.-T. Hu, and N. Davidson, Cell 48:555-566, 1987; J. Figge, C. Wright, C. J. Collins, T. M. Roberts, and D. M. Livingston, Cell 52:713-722, 1988). To improve the dynamic range of such an inducible system, we have investigated the effects of combining the relief by isopropyl-beta-D-thiogalactoside (IPTG) of negative control by the lac system with positive induction by the natural inducers glucocorticoids and cadmium ion for a system based on the human metallothionein-IIA gene promoter. We used the chloramphenicol acetyltransferase gene as a reporter gene and inserted a lacO sequence into the promoter between the GC box and metal-responsive element 1, between metal-responsive element 1 and the TATA box, or between the TATA box and the transcription start site. Surprisingly, all of these insertions had a significant inhibitory effect on promoter activity even in the absence of repressor. However, with these lacO-containing constructs, the levels of gene expression after induction by glucocorticoid, Cd2+, or both were considerably reduced in cells engineered to express the lac repressor. Derepression by IPTG, coupled with induction by both dexamethasone and Cd2+ ion, then provided a high level of induced expression, i.e., by a factor of approximately 100 over the basal level of expression. However, inserting the lacO sequence well upstream just before the glucocorticoid-responsive element had much smaller effects on expression levels in both repressor-negative and repressor-positive cells. This study describes a new, high-level-inducible promoter system for gene transfer experiments. The observed effects are discussed in terms of current models of the mechanisms by which transcription factors control gene expression.
机译:我们和其他人已经介绍了使用lac操纵子-阻遏物系统作为为动物细胞中的基因转移实验提供可诱导的基因表达的方法的使用(MC-T.Hu,和N.Davidson,Cell 48:555-566,1987。 J. Figge,C。Wright,CJ Collins,TM Roberts和DM Livingston,Cell 52:713-722,1988)。为了提高这种可诱导系统的动态范围,我们研究了由lac系统产生的负控制的异丙基-β-D-硫代半乳糖苷(IPTG)缓解与自然诱导剂糖皮质激素和镉离子的正诱导相结合的效果。基于人金属硫蛋白-IIA基因启动子的系统。我们使用氯霉素乙酰基转移酶基因作为报告基因,并将lacO序列插入到GC框和金属响应元件1之间,金属响应元件1和TATA框之间,或TATA框与转录起始位点之间的启动子中。 。令人惊讶地,所有这些插入即使在没有阻遏物的情况下也对启动子活性具有显着的抑制作用。但是,对于这些含lacO的构建体,在改造为表达lac阻遏物的细胞中,糖皮质激素,Cd2 +或两者诱导后的基因表达水平大大降低。 IPTG的抑制作用,再加上地塞米松和Cd2 +离子的诱导作用,可提供高水平的诱导表达,即比基础表达水平高约100倍。但是,将lacO序列恰好插入糖皮质激素应答元件之前的上游,对阻遏物阴性和阻遏物阳性细胞中的表达水平影响较小。这项研究描述了一种用于基因转移实验的新型,高水平诱导型启动子系统。根据转录因子控制基因表达的机制的当前模型讨论了观察到的效果。

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