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A Rapid FACS-Based Strategy to Isolate Human Gene Knockin and Knockout Clones

机译:一种快速FaCs为基础的策略以隔离人类基因敲入和敲除克隆

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摘要

Gene targeting protocols for mammalian cells remain inefficient and labor intensive. Here we describe FASTarget, a rapid, fluorescent cell sorting based strategy to isolate rare gene targeting events in human somatic cells. A fluorescent protein is used as a means for direct selection of targeted clones obviating the need for selection and outgrowth of drug resistant clones. Importantly, the use of a promoter-less, ATG-less construct greatly facilitates the recovery of correctly targeted cells. Using this method we report successful gene targeting in up to 94% of recovered human somatic cell clones. We create functional EYFP-tagged knockin clones in both transformed and non-transformed human somatic cell lines providing a valuable tool for mammalian cell biology. We further demonstrate the use of this technology to create gene knockouts. Using this generally applicable strategy we can recover gene targeted clones within approximately one month from DNA construct delivery to obtaining targeted monoclonal cell lines.
机译:哺乳动物细胞的基因靶向方案仍然低效和劳动密集型。在这里,我们描述了Fastarget,一种快速,荧光细胞分选的基于策略,以分离人体细胞中的罕见基因靶向事件。荧光蛋白被用作用于直接选择靶向克隆的手段,避免了耐药克隆的选择和生长的需要。重要的是,使用启动子 - 较少的构建体大大有助于恢复正确靶向细胞。使用这种方法,我们将成功的基因报告靶向高达94%的回收的人体细胞克隆。我们在转化的和非转化的人体细胞系中创建功能性Eyfp标记的敲扣克隆,为哺乳动物细胞生物学提供有价值的工具。我们进一步证明了这种技术的使用来创造基因敲门声。使用这种通常适用的策略,我们可以从DNA构建递送到获得靶向单克隆细胞系大约一个月内的基因靶向克隆。

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