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香豆霉素/新生霉素调控的基因表达系统。

A coumermycin/novobiocin-regulated gene expression system.

作者信息

Zhao Hui-Fen, Boyd Jason, Jolicoeur Normand, Shen Shi-Hsiang

机构信息

Mammalian Cell Genetics, Biotechnology Research Institute, National Research Council of Canada, Montreal, Quebec, Canada H4P 2R2.

出版信息

Hum Gene Ther. 2003 Nov 20;14(17):1619-29. doi: 10.1089/104303403322542266.

Abstract

Regulated expression of transgenes in mammals is an important technique in both functional genomic studies and clinical applications. Here we describe a regulated gene expression system for mammals, based on coumarin-switched dimerization of the bacterial DNA gyrase B subunit (GyrB). The transactivator was constructed by fusing the GyrB activator to the bacterial lambda repressor-binding domain. The antibiotic coumermycin in nanomolar concentrations activated the transgene through binding of the homodimerized chimeric transactivator to the lambda operator located upstream of a minipromoter. More significantly, addition of novobiocin, an antagonist of coumermycin, promptly switched off expression of the gene by abolishing coumermycin-induced dimerization of the transactivator. Site-directed mutagenesis of the lambda repressor-binding domain resulted in significant reduction of basal expression levels and an induction reaching four orders of magnitude in stably transfected 293A cells in response to coumermycin. The capability of this inducible system for tightly regulated gene expression was demonstrated by the ready generation of stable cell lines inducibly expressing the proapoptotic bax gene in mammalian cells. Hence, this novel coumarin switch-on/switch-off system should broaden the utility of regulated gene expression, particularly when rapid on/off interchange is required.

摘要

转基因在哺乳动物中的调控表达在功能基因组学研究和临床应用中都是一项重要技术。在此,我们描述一种基于细菌DNA促旋酶B亚基(GyrB)香豆素开关二聚化的哺乳动物调控基因表达系统。通过将GyrB激活剂与细菌λ阻遏物结合域融合构建反式激活因子。纳摩尔浓度的抗生素香豆霉素通过同源二聚化的嵌合反式激活因子与位于微型启动子上游的λ操纵子结合来激活转基因。更重要的是,添加香豆霉素拮抗剂新生霉素,通过消除香豆霉素诱导的反式激活因子二聚化,迅速关闭基因表达。λ阻遏物结合域的定点诱变导致基础表达水平显著降低,并且在稳定转染的293A细胞中,响应香豆霉素时诱导倍数达到四个数量级。通过在哺乳动物细胞中快速生成可诱导表达促凋亡基因bax的稳定细胞系,证明了该诱导系统严格调控基因表达的能力。因此,这种新型香豆素开/关系统应能拓宽调控基因表达的应用范围,特别是在需要快速开/关切换的情况下。

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