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A Highly Efficient Recombineering-Based Method for Generating Conditional Knockout Mutations

机译:一种高效的基于重组的产生条件基因敲除突变的方法

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摘要

Phage-based Escherichia coli homologous recombination systems have recently been developed that now make it possible to subclone or modify DNA cloned into plasmids, BACs, or PACs without the need for restriction enzymes or DNA ligases. This new form of chromosome engineering, termed recombineering, has many different uses for functional genomic studies. Here we describe a new recombineering-based method for generating conditional mouse knockout (cko) mutations. This method uses homologous recombination mediated by the λ phage Red proteins, to subclone DNA from BACs into high-copy plasmids by gap repair, and together with Cre or Flpe recombinases, to introduce loxP or FRT sites into the subcloned DNA. Unlike other methods that use short 45–55-bp regions of homology for recombineering, our method uses much longer regions of homology. We also make use of several new E. coli strains, in which the proteins required for recombination are expressed from a defective temperature-sensitive λ prophage, and the Cre or Flpe recombinases from an arabinose-inducible promoter. We also describe two new Neo selection cassettes that work well in both E. coli and mouse ES cells. Our method is fast, efficient, and reliable and makes it possible to generate cko-targeting vectors in less than 2 wk. This method should also facilitate the generation of knock-in mutations and transgene constructs, as well as expedite the analysis of regulatory elements and functional domains in or near genes.
机译:最近开发了基于噬菌体的大肠杆菌同源重组系统,该系统现在可以亚克隆或修饰克隆到质粒,BAC或PAC中的DNA,而无需限制酶或DNA连接酶。染色体工程的这种新形式称为重组,在功能基因组研究中有许多不同的用途。在这里,我们描述了一种新的基于重组的方法,用于产生条件小鼠基因敲除(cko)突变。此方法使用λ噬菌体Red蛋白介导的同源重组,通过缺口修复将BAC中的DNA亚克隆为高拷贝质粒,并与Cre或Flpe重组酶一起,将loxP或FRT位点引入亚克隆的DNA中。与其他使用短45-55-bp同源区域进行重组的方法不同,我们的方法使用更长的同源区域。我们还利用了几种新的大肠杆菌菌株,其中重组所需的蛋白质从有缺陷的对温度敏感的λ噬菌体中表达,而Cre或Flpe重组酶则从阿拉伯糖诱导型启动子中表达。我们还描述了两个新的Neo选择盒,它们在大肠杆菌和小鼠ES细胞中都能很好地工作。我们的方法快速,有效和可靠,并且可以在不到2周的时间内生成cko-targeting向量。该方法还应促进敲入突变和转基因构建体的产生,并加快对基因内或附近的调控元件和功能域的分析。

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