Osterwalder T, Yoon K S, White B H, Keshishian H
Department of Molecular, Cellular, and Developmental Biology, and Pharmacology Department, Yale University, P. O. Box 208103, New Haven, CT 06511, USA.
Proc Natl Acad Sci U S A. 2001 Oct 23;98(22):12596-601. doi: 10.1073/pnas.221303298.
In Drosophila, the most widely used system for generating spatially restricted transgene expression is based on the yeast GAL4 protein and its target upstream activating sequence (UAS). To permit temporal as well as spatial control over UAS-transgene expression, we have explored the use of a conditional RU486-dependent GAL4 protein (GeneSwitch) in Drosophila. By using cloned promoter fragments of the embryonic lethal abnormal vision gene or the myosin heavy chain gene, we have expressed GeneSwitch specifically in neurons or muscles and show that its transcriptional activity within the target tissues depends on the presence of the activator RU486 (mifepristone). We used available UAS-reporter lines to demonstrate RU486-dependent tissue-specific transgene expression in larvae. Reporter protein expression could be detected 5 h after systemic application of RU486 by either feeding or "larval bathing." Transgene expression levels were dose-dependent on RU486 concentration in larval food, with low background expression in the absence of RU486. By using genetically altered ion channels as reporters, we were able to change the physiological properties of larval bodywall muscles in an RU486-dependent fashion. We demonstrate here the applicability of GeneSwitch for conditional tissue-specific expression in Drosophila, and we provide tools to control pre- and postsynaptic expression of transgenes at the larval neuromuscular junction during postembryonic life.
在果蝇中,用于产生空间受限转基因表达的最广泛使用的系统是基于酵母GAL4蛋白及其靶向上游激活序列(UAS)。为了实现对UAS转基因表达的时空控制,我们探索了在果蝇中使用一种依赖于RU486的条件性GAL4蛋白(基因开关)。通过使用胚胎致死异常视觉基因或肌球蛋白重链基因的克隆启动子片段,我们在神经元或肌肉中特异性地表达了基因开关,并表明其在靶组织中的转录活性取决于激活剂RU486(米非司酮)的存在。我们使用现有的UAS报告系来证明幼虫中RU486依赖的组织特异性转基因表达。通过喂食或“幼虫浸泡”全身应用RU486后5小时即可检测到报告蛋白的表达。转基因表达水平在幼虫食物中对RU486浓度呈剂量依赖性,在没有RU486的情况下背景表达较低。通过使用基因改造的离子通道作为报告基因,我们能够以RU486依赖的方式改变幼虫体壁肌肉的生理特性。我们在此证明了基因开关在果蝇中用于条件性组织特异性表达的适用性,并提供了在胚胎后生活期间控制幼虫神经肌肉接头处转基因突触前和突触后表达的工具。