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A New Method for Rapidly Generating Gene-Targeting Vectors by Engineering BACs Through Homologous Recombination in Bacteria

机译:通过细菌同源重组工程BAC快速生成基因靶向载体的新方法

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摘要

Generating knockout mice is still an expensive and highly time-consuming process. Target construct generation, the first labor-intensive step in this process, requires the manipulation of large fragments of DNA and numerous, and often cumbersome, cloning steps. Here we show the development of a rapid approach for generating targeting constructs that capitalizes on efficient homologous recombination between linear DNA fragments and circular plasmids in Escherichia coli (“recombineering”), the availability of bacterial artificial chromosomes (BACs), and the accessibility of the sequence of the mouse genome. Employing recombineering, we demonstrate with only 1–2 template plasmids, short homologies (40–50bp) between donor and target DNA, and one subcloning step that we can efficiently manipulate BACs in situ to generate a complicated targeting vector. This procedure avoids the need to construct or screen genomic libraries and permits the generation of most standard, conditional, or knock-in targeting vectors, often within two weeks.
机译:产生基因敲除小鼠仍然是一个昂贵且耗时的过程。目标构建体的生成是该过程中的第一项劳动密集型步骤,需要操纵DNA的大片段以及众多且通常繁琐的克隆步骤。在这里,我们展示了一种快速生成靶向构建物的方法,该方法利用了大肠杆菌中线性DNA片段和环状质粒之间的有效同源重组(“重组”),细菌人工染色体(BAC)的可利用性以及小鼠基因组的序列。通过重组,我们展示了仅使用1-2个模板质粒,供体和目标DNA之间的短同源性(40-50bp)以及一个亚克隆步骤,我们可以有效地原位操作BAC来生成复杂的靶向载体。该程序避免了构建或筛选基因组文库的需要,并允许通常在两周内生成大多数标准的,条件的或敲入的靶向载体。

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