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俄耳甫斯重组:一种用于通过转位构建小鼠靶向载体的综合噬菌体系统。

Orpheus recombination : a comprehensive bacteriophage system for murine targeting vector construction by transplacement.

作者信息

Woltjen Knut, Ito Kenichi, Tsuzuki Teruhisa, Rancourt Derrick E

机构信息

Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, Alberta, Canada.

出版信息

Methods Mol Biol. 2008;435:79-94. doi: 10.1007/978-1-59745-232-8_6.

Abstract

In recent years, methods to address the simplification of targeting vector (TV) construction have been developed and validated. Based on in vivo recombination in Escherichia coli, these protocols have reduced dependence on restriction endonucleases, allowing the fabrication of complex TV constructs with relative ease. Using a methodology based on phage-plasmid recombination, we have developed a comprehensive TV construction protocol dubbed Orpheus recombination (ORE). The ORE system addresses all necessary requirements for TV construction; from the isolation of genespecific regions of homology to the deposition of selection/disruption cassettes. ORE makes use of a small recombination plasmid, which bears positive and negative selection markers and a cloned homologous "probe" region. This probe plasmid may be introduced into and excised from phage-borne murine genomic clones by two rounds of single crossover recombination. In this way, desired clones can be specifically isolated from a heterogeneous library of phage. Furthermore, if the probe region contains a designed mutation, it may be deposited seamlessly into the genomic clone. The complete removal of operational sequences allows unlimited repetition of the procedure to customize and finalize TVs within a few weeks. Successful gene-specific clone isolation, point mutations, large deletions, cassette insertions, and finally coincident clone isolation and mutagenesis have all been demonstrated with this method.

摘要

近年来,已经开发并验证了用于简化靶向载体(TV)构建的方法。基于大肠杆菌体内重组,这些方案减少了对限制性内切酶的依赖,从而相对轻松地构建复杂的TV构建体。我们利用基于噬菌体 - 质粒重组的方法,开发了一种称为俄耳甫斯重组(ORE)的全面TV构建方案。ORE系统满足了TV构建的所有必要要求;从基因特异性同源区域的分离到选择/破坏盒式结构的插入。ORE利用一种小型重组质粒,该质粒带有正负选择标记和一个克隆的同源“探针”区域。通过两轮单交换重组,该探针质粒可以导入噬菌体携带的小鼠基因组克隆并从中切除。通过这种方式,可以从噬菌体的异质文库中特异性分离出所需的克隆。此外,如果探针区域包含设计好的突变,它可以无缝地插入到基因组克隆中。操作序列的完全去除使得该过程可以无限重复,从而在几周内定制并完成TV。这种方法已经证明了成功进行基因特异性克隆分离、点突变、大的缺失、盒式结构插入,以及最终同时进行克隆分离和诱变。

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