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Inducible control of tissue-specific transgene expression in Xenopus tropicalis transgenic lines

机译:非洲爪蟾转基因株中组织特异性转基因表达的诱导控制

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摘要

Analysis of gene function in vertebrates is facilitated by gain-of-function studies, such as injection of synthetic mRNA in amphibian embryos. This approach is hampered by lack of spatial and temporal control of expression Of the introduced gene product. An additional level of control is obtained by nuclear-transfer-mediated transgenesis, but functional analyses are complicated by variability and background abnormalities in primary transgenic embryos. The GAL4/UAS system permits establishment of stable lines and elimination of nuclear-transfer-associated abnormalities, through generation of separate UAS-'effector' and GAL4 'transactivator' transgenic lines. When the GAL4 DNA-binding domain is combined with a steroid hormone ligand-binding domain,this system allows full temporal regulation of transgene expression by introduction of an exogenous steroid analogue, the progesterone antagonist RU486. We show here that by crossing stable Xenopus tropicalis transgenic lines, one bearing a UAS-enhancedcyan fluorescent protein (ECFP) reporter construct, and the other with a GAL4-progesterone receptor fusion driven by a retina-specific promoter, reporter expression in the resulting embryos can be induced with RU486 in a tissue-specific manner. These results suggest that the inducible binary system, in which the target gene expression can be controlled in a stage- and tissue-specific pattern, should be readily applicable for gene function studies at all stages of development.
机译:功能获得性研究(例如在两栖动物胚胎中注入合成的mRNA)促进了脊椎动物基因功能的分析。由于缺乏对导入的基因产物表达的空间和时间控制,这种方法受到阻碍。通过核转移介导的转基因获得了更高水平的控制,但是功能性分析由于初级转基因胚胎的变异性和背景异常而变得复杂。 GAL4 / UAS系统通过生成单独的UAS-“效应子”和GAL4“反式激活子”转基因品系,可以建立稳定的品系并消除与核转移相关的异常。当GAL4 DNA结合结构域与类固醇激素配体结合结构域结合时,该系统可通过引入外源性类固醇类似物孕酮拮抗剂RU486来对转基因表达进行全面的时间调控。我们在这里显示,通过杂交稳定的热带非洲爪蟾转基因株系,一个带有UAS增强型蓝绿色荧光蛋白(ECFP)报告基因构建体,另一个与由视网膜特异性启动子驱动的GAL4-孕激素受体融合,报告子在所得胚胎中表达可以用RU486以组织特异性方式诱导。这些结果表明,可诱导的二元系统,其中目标基因的表达可以以阶段和组织特异性模式进行控制,应该很容易地应用于发育各个阶段的基因功能研究。

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