Sun C H, Tai J H
Division of Infectious Diseases, Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan, ROC.
Mol Biochem Parasitol. 2000 Jan 5;105(1):51-60. doi: 10.1016/s0166-6851(99)00163-2.
Giardia lamblia is a very common intestinal protozoan pathogen of humans. Recent development of gene transfection systems in G. lamblia has allowed constitutive expression of selected genes in the organism. To extend the uses of DNA transfection in G. lamblia, an inducible gene expression system was developed by integrating the bacterial tet operator-repressor elements into an episomal DNA transfection vector. Tetracycline-responsive promoters with insertions of multiple tet operator sequences in the vicinity of a synthetic ran promoter were tested for their inducibility of a luciferase reporter gene expression. Stable cell lines transfected with individual plasmid constructs were established under drug selection. By assaying luciferase activity in transfected cells in response to tetracycline, an inducible promoter with insertion of two tet operators downstream of the adjacent synthetic ran promoter was found to confer a 10-fold inducibility in gene expression with co-expression of the tet-repressor driven by a gdh promoter. To further improve its inducibility, several other synthetic promoter contexts were also tested to increase expression of the tet-repressor gene. An optimal inducibility of 50-fold was obtained when a synthetic alpha-giardin promoter was used. Fine tuning of luciferase expression was achieved by adjusting the concentration of tetracycline and duration of drug exposure. The inducible gene expression system provides us an easy way to manipulate the level of gene expression in G. lamblia in a controllable manner that could not previously be achieved.
蓝氏贾第鞭毛虫是一种非常常见的人类肠道原生动物病原体。蓝氏贾第鞭毛虫基因转染系统的最新发展使得特定基因能够在该生物体中组成型表达。为了扩展DNA转染在蓝氏贾第鞭毛虫中的应用,通过将细菌四环素操纵子 - 阻遏物元件整合到游离型DNA转染载体中,开发了一种可诱导基因表达系统。测试了在合成的ran启动子附近插入多个四环素操纵序列的四环素响应启动子对荧光素酶报告基因表达的诱导能力。在药物选择下建立了用单个质粒构建体转染的稳定细胞系。通过检测转染细胞中荧光素酶活性对四环素的响应,发现在相邻合成ran启动子下游插入两个四环素操纵子的诱导型启动子在四环素阻遏物由gdh启动子驱动共表达时,可使基因表达具有10倍的诱导性。为了进一步提高其诱导性,还测试了其他几种合成启动子背景以增加四环素阻遏物基因的表达。当使用合成的α - 贾第蛋白启动子时,获得了50倍的最佳诱导性。通过调整四环素浓度和药物暴露时间实现了荧光素酶表达的微调。该可诱导基因表达系统为我们提供了一种简便的方法,能够以可控的方式操纵蓝氏贾第鞭毛虫中的基因表达水平,而这在以前是无法实现的。