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Repressor titration: a novel system for selection and stable maintenance of recombinant plasmids.

机译:阻遏物滴定:一种用于选择和稳定维持重组质粒的新型系统。

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The propagation of recombinant plasmids in bacterial hosts, particularly in Escherichia coli, is essential for the amplification and manipulation of cloned DNA and the production of recombinant proteins. The isolation of bacterial transformants and subsequent stable plasmid maintenance have traditionally been accomplished using plasmid-borne selectable marker genes. Here we describe a novel system that employs plasmid-mediated repressor titration to activate a chromosomal selectable marker, removing the requirement for a plasmid-borne marker gene. A modified E.coli host strain containing a conditionally essential chromosomal gene (kan) under the control of the lac operator/promoter, lac O/P, has been constructed. In the absence of an inducer (allolactose or IPTG) this strain, DH1 lackan , cannot grow on kanamycin-containing media due to the repression of kan expression by LacI protein binding to lac O/P. Transformation with a high copy-number plasmid containing the lac operator, lac O, effectively induces kan expression by titrating LacI from the operator. This strain thus allows the selection of plasmids without antibiotic resistance genes (they need only contain lac O and an origin of replication) which have clear advantages for use as gene therapy vectors. Regulation in the same way of an essential, endogenous bacterial gene will allow the production of recombinant therapeutics devoid of residual antibiotic contamination.
机译:重组质粒在细菌宿主中,特别是在大肠杆菌中的繁殖,对于扩增和操纵克隆的DNA以及生产重组蛋白至关重要。传统上,细菌转化子的分离和随后稳定的质粒维持是使用质粒携带的选择标记基因完成的。在这里,我们描述了一种新型系统,该系统采用质粒介导的阻遏物滴定来激活染色体选择标记,从而消除了对质粒携带的标记基因的需求。已经构建了一个修饰的大肠杆菌宿主菌株,该菌株在lac操纵子/启动子lac O / P的控制下包含一个条件必需的染色体基因(kan)。在缺乏诱导剂(异乳糖或IPTG)的情况下,由于LacI蛋白与lac O / P结合而抑制了kan表达,因此该菌株DH1缺乏,无法在含卡那霉素的培养基上生长。用含有lac操纵子lac O的高拷贝数质粒进行转化,可通过从操纵子中滴定LacI来有效诱导kan表达。因此,该菌株允许选择不具有抗生素抗性基因的质粒(它们仅需要含有lac O和复制起点),这些质粒具有明显的优势,可用作基因治疗载体。以必要的内源细菌基因相同的方式进行调节,将可以生产没有残留抗生素污染的重组治疗药物。

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