Aoyama C, Woltjen K, Mansergh F C, Ishidate K, Rancourt D E
Tokyo Medical and Dental University, Chiyodaku.
Biotechniques. 2002 Oct;33(4):806-10, 812. doi: 10.2144/02334st04.
A rate-determining step in gene targeting is the generation of the targeting vector. We have developed bacteriophage gene targeting vectorology, which shortens the timeline of targeting vector construction. Using retro-recombination screening, we can rapidly isolate targeting vectors from an embryonic stem cell genomic library via integrative and excisive recombination. We have demonstrated that recombination can be used to introduce specific point mutations or unique restriction sites into gene targeting vectors via transplacement. Using the choline/ethanolamine kinase alpha and beta genes as models, we demonstrate that transplacement can also be used to introduce specifically a neo resistance cassette into a gene targeting phage. In our experience, the lambdaTK gene targeting system offers considerable flexibility and efficiency in TV construction, which makes generating multiple vectors in one week's time possible.
基因打靶中的一个限速步骤是打靶载体的构建。我们开发了噬菌体基因打靶载体技术,该技术缩短了打靶载体构建的时间线。利用反向重组筛选,我们可以通过整合和切除重组从胚胎干细胞基因组文库中快速分离出打靶载体。我们已经证明,重组可用于通过转位将特定的点突变或独特的限制性酶切位点引入基因打靶载体。以胆碱/乙醇胺激酶α和β基因为模型,我们证明转位也可用于将新霉素抗性盒特异性地引入基因打靶噬菌体中。根据我们的经验,λTK基因打靶系统在打靶载体构建中具有相当大的灵活性和效率,这使得在一周时间内生成多个载体成为可能。