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Development of a BAC vector for integration-independent and tight regulation of transgenes in rodents via the Tet system

机译:通过Tet系统开发BAC载体,用于啮齿类动物转基因的非整合整合和严格调控

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摘要

The establishment of functional transgenic mouse lines is often limited by problems caused by integration site effects on the expression construct. Similarly, tetracycline (Tet) controlled transcription units most commonly used for conditional transgene expression in mice are strongly influenced by their genomic surrounding. Using bacterial artificial chromosome (BAC) technology in constitutive expression systems, it has been shown that integration site effects resulting in unwanted expression patterns can be largely eliminated. Here we describe a strategy to minimize unfavourable integration effects on conditional expression constructs based on a 75 kb genomic BAC fragment. This fragment was derived from a transgenic mouse line, termed LC-1, which carries the Tet-inducible genes luciferase and cre (Schonig et al. 2002). Animals of this mouse line have previously been shown to exhibit optimal expression properties in terms of tightness in the off state and the absolute level of induction, when mated to appropriate transactivator expressing mice. Here we report the cloning and identification of the transgenic LC-1 integration site which was subsequently inserted into a bacterial artificial chromosome. We demonstrate that this vector facilitates the efficient generation of transgenic mouse and rat lines, where the Tet-controlled expression unit is shielded from perturbations caused by the integration site.
机译:功能性转基因小鼠品系的建立通常受到整合位点对表达构建体影响所引起的问题的限制。同样,最常用于小鼠中条件转基因表达的四环素(Tet)控制的转录单位受其基因组环境的强烈影响。使用细菌人工染色体(BAC)技术在组成型表达系统中,已经表明,导致不需要的表达模式的整合位点效应可以被很大程度上消除。在这里,我们描述了一种策略,以最大限度地减少对基于75 kb基因组BAC片段的条件表达构建体的不利整合作用。该片段衍生自称为LC-1的转基因小鼠品系,其携带Tet诱导基因荧光素酶和cre(Schonig等,2002)。先前已经证明,当与合适的表达反式激活因子的小鼠交配时,该小鼠品系的动物在关闭状态下的紧密性和绝对诱导水平方面表现出最佳的表达特性。在这里,我们报告了转基因LC-1整合位点的克隆和鉴定,该位点随后被插入细菌人工染色体中。我们证明,此载体促进了转基因小鼠和大鼠品系的高效生成,其中Tet受控的表达单位被屏蔽了由整合位点引起的扰动。

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