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Rapid tagging of endogenous mouse genes by recombineering and ES cell complementation of tetraploid blastocysts

机译:通过四倍体胚泡的重组和ES细胞互补快速标记内源性小鼠基因

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摘要

The construction of knockin vectors designed to modify endogenous genes in embryonic stem (ES) cells and the generation of mice from these modified cells is time consuming. The timeline of an experiment from the conception of an idea to the availability of mature mice is at least 9 months. We describe a method in which this timeline is typically reduced to 3 months. Knockin vectors are rapidly constructed from bacterial artificial chromosome clones by recombineering followed by gap-repair (GR) rescue, and mice are rapidly derived by injecting genetically modified ES cells into tetraploid blastocysts. We also describe a tandem affinity purification (TAP)/floxed marker gene plasmid and a GR rescue plasmid that can be used to TAP tag any murine gene. The combination of recombineering and tetraploid blastocyst complementation provides a means for large-scale TAP tagging of mammalian genes.
机译:设计用于修饰胚胎干(ES)细胞中内源基因的敲入载体以及从这些修饰的细胞中产生小鼠是费时的。从构思概念到获得成熟小鼠的实验时间至少为9个月。我们描述了一种方法,其中此时间表通常减少到3个月。通过重组和随后的缺口修复(GR)抢救,从细菌人工染色体克隆中快速构建敲除载体,并通过将基因修饰的ES细胞注入四倍体胚泡中来快速衍生小鼠。我们还描述了串联亲和纯化(TAP)/ floxed标记基因质粒和GR救援质粒,可用于TAP标记任何鼠类基因。重组和四倍体胚泡互补的组合为哺乳动物基因的大规模TAP标签提供了一种手段。

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