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强力霉素诱导的转基因在果蝇发育和衰老过程中的表达。

Doxycycline-induced transgene expression during Drosophila development and aging.

作者信息

Bieschke E T, Wheeler J C, Tower J

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles 90089-1340, USA.

出版信息

Mol Gen Genet. 1998 Jun;258(6):571-9. doi: 10.1007/s004380050770.

Abstract

The "reverse" tetracycline repressor (rtR) binds a specific DNA element, the tetracycline operator (tetO), only in the presence of tetracycline, or derivatives such as doxycycline (dox). Fusion of rtR to the transcriptional activation domain of herpes virus protein VP16 produces a eukaryotic transactivator protein (rtTA). rtTA has previously been shown to allow dox-dependent transcription of transgenes linked to tetO sequences in mammals. To adapt this system to Drosophila, the Actin5C promoter was used to drive constitutive expression of rtTA in transgenic flies. Three reporter constructs, each encoding E. coli beta-galactosidase (beta-gal), were also introduced into transgenic flies. In one reporter seven tetO sequences were fused to the Adh core promoter. The other two reporter constructs contain seven tetO sequences fused to the hsp70 core promoter. Feeding of transgenic Drosophila containing the rtTA construct and any one of the three reporter constructs with dox caused up to 100-fold induction of beta-gal. Dox induced beta-gal expression in all tissues, in larvae and in young and senescent adults. Induction of beta-gal in adults had no detectable effect on life span. These results suggest the potential usefulness of this system for testing specific genes for effects on Drosophila development and aging.

摘要

“反向”四环素阻遏物(rtR)仅在存在四环素或其衍生物如强力霉素(dox)时,才会结合特定的DNA元件——四环素操纵子(tetO)。将rtR与疱疹病毒蛋白VP16的转录激活结构域融合,产生一种真核反式激活蛋白(rtTA)。此前已证明rtTA可使与tetO序列相连的转基因在哺乳动物中实现多西环素依赖的转录。为使该系统适用于果蝇,采用肌动蛋白5C启动子驱动转基因果蝇中rtTA的组成型表达。还将三种报告基因构建体导入转基因果蝇,每种构建体都编码大肠杆菌β-半乳糖苷酶(β-gal)。在一种报告基因中,七个tetO序列与乙醇脱氢酶核心启动子融合。另外两种报告基因构建体包含七个与热休克蛋白70核心启动子融合的tetO序列。用多西环素喂养含有rtTA构建体和三种报告基因构建体中任何一种的转基因果蝇,可使β-半乳糖苷酶的诱导表达提高多达100倍。多西环素在幼虫以及年轻和衰老成虫的所有组织中均诱导β-半乳糖苷酶表达。在成虫中诱导β-半乳糖苷酶表达对寿命没有可检测到的影响。这些结果表明该系统在测试特定基因对果蝇发育和衰老的影响方面具有潜在用途。

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