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A series of conditional shuttle vectors for targeted genomic integration in budding yeast

机译:一系列有条件的穿梭载体,用于发芽酵母中的靶向基因组整合

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The capacity of Saccharomyces cerevisiae to repair exposed DNA ends by homologous recombination has long been used by experimentalists to assemble plasmids from DNA fragments in vivo. While this approach works well for engineering extrachromosomal vectors, it is not well suited to the generation, recovery and reuse of integrative vectors. Here, we describe the creation of a series of conditional centromeric shuttle vectors, termed pXR vectors, that can be used for both plasmid assembly in vivo and targeted genomic integration. The defining feature of pXR vectors is that the DNA segment bearing the centromere and origin of replication, termed CEN/ARS, is flanked by a pair of loxP sites. Passaging the vectors through bacteria that express Cre recombinase reduces the loxP-CEN/ARS-loxP module to a single loxP site, thereby eliminating the ability to replicate autonomously in yeast. Each vector also contains a selectable marker gene, as well as a fragment of the HO locus, which permits targeted integration at a neutral genomic site. The pXR vectors provide a convenient and robust method to assemble DNAs for targeted genomic modifications.
机译:酿酒酵母通过同源重组修复暴露的DNA末端的能力长期以来被实验学家用来在体内从DNA片段组装质粒。尽管此方法对工程化染色体外载体非常有效,但不适用于整合载体的生成,恢复和重用。在这里,我们描述了一系列有条件的着丝粒穿梭载体的创建,称为pXR载体,可用于体内质粒组装和靶向基因组整合。 pXR载体的主要特征是带有着丝粒和复制起点的DNA片段(称为CEN / ARS)位于一对loxP位点的两侧。使载体通过表达Cre重组酶的细菌,会使loxP-CEN / ARS-loxP模块减少到单个loxP位点,从而消除了在酵母中自主复制的能力。每个载体还包含选择标记基因以及HO基因座的片段,其允许在中性基因组位点靶向整合。 pXR载体为组装DNA进行靶向基因组修饰提供了一种方便而强大的方法。

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