首页> 外文期刊>Journal of bacteriology >Convenient and reversible site-specific targeting of exogenous DNA into a bacterial chromosome by use of the FLP recombinase: the FLIRT system.
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Convenient and reversible site-specific targeting of exogenous DNA into a bacterial chromosome by use of the FLP recombinase: the FLIRT system.

机译:通过使用FLP重组酶:FLIRT系统,可方便且可逆地将外源DNA靶向细菌细菌染色体。

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We have created a system that utilizes the FLP recombinase of yeast to introduce exogenous cloned DNA reversibly at defined locations in the Escherichia coli chromosome. Recombination target (FRT) sites can be introduced permanently at random locations in the chromosome on a modified Tn5 transposon, now designed so that the inserted FRT can be detected and its location mapped with base pair resolution. FLP recombinase is provided as needed through the regulated expression of its gene on a plasmid. Exogenous DNA is introduced on a cloning vector that contains an FRT, selectable markers, and a replication origin designed to be deleted prior to electroporation for targeting purposes. High yields of targeted integrants are obtained, even in a recA background. This system permits rapid and precise excision of the introduced DNA when needed, without destroying the cells. The efficiency of targeting appears to be affected only modestly by transcription initiation upstream of the chromosomal FRT site. With rare exceptions, FRTs introduced to the bacterial chromosome are targeted with high efficiency regardless of their location. The system should facilitate studies of bacterial genome structure and function, simplify a wide range of chromosomal cloning applications, and generally enhance the utility of E. coli as an experimental organism in biotechnology.
机译:我们创建了一个系统,该系统利用酵母的FLP重组酶在大肠杆菌染色体上的指定位置可逆地引入外源克隆DNA。重组靶标(FRT)位点可以永久性地引入修饰的Tn5转座子的染色体上的随机位置,现已设计成可以检测插入的FRT,并以碱基对分辨率定位其位置。通过在质粒上调节其基因的表达,根据需要提供FLP重组酶。将外源DNA引入克隆载体中,该克隆载体包含FRT,选择标记和复制起点,该复制起点设计用于电穿孔之前用于靶向目的而被删除。即使在recA背景下,也可获得高产量的目标整合物。该系统允许在需要时快速,精确地切除导入的DNA,而不会破坏细胞。靶向的效率似乎仅受染色体FRT位点上游转录起始的影响。除极少数情况外,引入细菌染色体的FRT不论其位置如何,都是高效靶向的。该系统应有助于细菌基因组结构和功能的研究,简化广泛的染色体克隆应用,并通常增强大肠杆菌作为生物技术中实验生物的效用。

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