Sung Bong Hyun, Lee Jun Hyoung, Kim Sun Chang
Industrial Biotechnology and Bioenergy Research Center, Korea Research Institute of Bioscience & Biotechnology (KRIBB), Daejeon, South Korea.
Methods Mol Biol. 2011;765:43-54. doi: 10.1007/978-1-61779-197-0_3.
An improved and rapid genomic engineering method has been developed for the construction of -custom-designed microorganisms by scarless chromosomal gene knockouts. This method, which can be performed in 2 days, permits restructuring of the Escherichia coli genome via scarless deletion of selected genomic regions. The deletion process is mediated by a special plasmid, pREDI, which carries two independent inducible promoters: (1) an arabinose-inducible promoter that drives expression of λ-RED recombination proteins, which carry out the replacement of a target genomic region with a marker-containing linear DNA cassette, and (2) a rhamnose-inducible promoter that drives expression of I-SceI endonuclease, which accomplishes deletion of the introduced marker by double-strand breakage - mediated intramolecular recombination. This genomic deletion is performed simply by changing the carbon source in the bacterial growth medium from arabinose to rhamnose. The efficiencies of targeted region replacement and deletion of the inserted linear DNA cassette are nearly 70 and 100%, respectively. This rapid and efficient procedure can be adapted for use in generating a variety of genome modifications.
已开发出一种改进的快速基因组工程方法,用于通过无痕染色体基因敲除构建定制设计的微生物。这种方法可在两天内完成,能通过对选定基因组区域进行无痕缺失来重组大肠杆菌基因组。缺失过程由一种特殊质粒pREDI介导,该质粒带有两个独立的可诱导启动子:(1)一个阿拉伯糖可诱导启动子,驱动λ-RED重组蛋白的表达,这些蛋白用含标记的线性DNA盒替换目标基因组区域;(2)一个鼠李糖可诱导启动子,驱动I-SceI内切核酸酶的表达,该酶通过双链断裂介导的分子内重组完成引入标记的缺失。这种基因组缺失只需将细菌生长培养基中的碳源从阿拉伯糖改为鼠李糖即可实现。目标区域替换和插入线性DNA盒缺失的效率分别接近70%和100%。这种快速高效的方法可适用于产生多种基因组修饰。