Sarao R, Dumont D J
Amgen Institute, University of Toronto, Ontario, Canada.
Transgenic Res. 1998 Nov;7(6):421-7. doi: 10.1023/a:1008837410485.
The ability to tightly control transgene expression in vivo provides an opportunity to determine the role of certain gene products at different times during development and/or in response to different stimuli. We have characterized and evaluated a tetracycline-responsive endothelial-specific binary system during mouse development, by engineering several transgenic lines which drive the expression of a tetracycline-controlled transactivator (tTA) under the control of either the Tek or Tie promoters (driver lines). We have also generated a responder line which carries multiple copies of the tTA DNA binding element (tetOS) upstream of a reporter gene coding for a nuclear targeted beta-galactosidase (responder lines). No expression of the target transgene was detected in mice homozygous for the reporter transgene. On mating the driver lines with the responder line, expression of beta-galactosidase from the reporter transgene was detected within the endothelium. Responder transgene expression was repressed rapidly upon addition of doxycycline to the drinking water. Importantly, this repression was reversible upon withdrawal of the drug. This approach should be useful to deliver the expression of potentially toxic gene products or rescue embryonic mutations that affect either the endothelial lineage or production of growth factors which are secreted systemically.
在体内严格控制转基因表达的能力为确定某些基因产物在发育过程中的不同时间和/或对不同刺激作出反应时的作用提供了机会。我们通过构建几个转基因品系,在Tek或Tie启动子(驱动品系)的控制下驱动四环素控制的反式激活因子(tTA)的表达,对小鼠发育过程中的四环素反应性内皮特异性二元系统进行了表征和评估。我们还构建了一个反应品系,该品系在编码核靶向β-半乳糖苷酶的报告基因上游携带多个tTA DNA结合元件(tetOS)拷贝(反应品系)。在报告转基因的纯合小鼠中未检测到目标转基因的表达。将驱动品系与反应品系交配后,在内皮中检测到报告转基因中β-半乳糖苷酶的表达。在饮用水中添加强力霉素后,反应转基因的表达迅速受到抑制。重要的是,这种抑制在停药后是可逆的。这种方法对于传递潜在有毒基因产物的表达或挽救影响内皮谱系或全身分泌的生长因子产生的胚胎突变应该是有用的。