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Escherichia coli strains that allow antibiotic-free plasmid selection and maintenance by repressor titration.

机译:大肠杆菌菌株,可通过阻遏物滴定法选择和维持无抗生素质粒。

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We report the construction of two novel Escherichia coli strains (DH1lacdapD and DH1lacP2dapD) that facilitate the antibiotic-free selection and stable maintenance of recombinant plasmids in complex media. They contain the essential chromosomal gene, dapD, under the control of the lac operator/promoter. Unless supplemented with IPTG (which induces expression of dapD) or DAP, these cells lyse. However, when the strains are transformed with a multicopy plasmid containing the lac operator, the operator competitively titrates the LacI repressor and allows expression of dapD from the lac promoter. Thus transformants can be isolated and propagated simply by their ability to grow on any medium by repressor titration selection. No antibiotic resistance genes or other protein expressing sequences are required on the plasmid, and antibiotics are not necessary for plasmid selection, making these strains a valuable tool for therapeutic DNA and recombinant protein production. We describe the construction of these strains and demonstrate plasmid selection and maintenance by repressor titration, using the new pORT plasmid vectors designed to facilitate recombinant DNA exploitation.
机译:我们报告了两种新型大肠杆菌菌株(DH1lacdapD和DH1lacP2dapD)的构建,这些菌株可促进无抗生素的选择以及在复杂培养基中稳定维持重组质粒的表达。它们包含必需的染色体基因,在lac操纵子/启动子的控制下。除非补充有IPTG(诱导dapD的表达)或DAP,否则这些细胞会裂解。但是,当用含有lac操纵子的多拷贝质粒转化菌株时,该操纵子竞争性滴定LacI阻遏物,并允许lac启动子表达dapD。因此,可以通过阻遏物滴定选择简单地通过转化子在任何培养基上生长的能力来分离和繁殖转化子。质粒上不需要抗生素抗性基因或其他蛋白质表达序列,并且质粒选择不需要抗生素,这使得这些菌株成为治疗性DNA和重组蛋白质生产的有价值的工具。我们描述了这些菌株的构建,并通过使用旨在促进重组DNA利用的新pORT质粒载体,通过阻遏物滴定来证明质粒的选择和维持。

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