首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Transfection Selection and Colony-picking of Human Induced Pluripotent Stem Cells TALEN-targeted with a GFP Gene into the AAVS1 Safe Harbor
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Transfection Selection and Colony-picking of Human Induced Pluripotent Stem Cells TALEN-targeted with a GFP Gene into the AAVS1 Safe Harbor

机译:人类诱导的多能干细胞以GFP基因为目标的TALEN转染选择和集落挑选到AAVS1安全港

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摘要

Targeted transgene addition can provide persistent gene expression while circumventing the gene silencing and insertional mutagenesis caused by viral vector mediated random integration. This protocol describes a universal and efficient transgene targeted addition platform in human iPSCs based on utilization of validated open-source TALENs and a gene-trap-like donor to deliver transgenes into a safe harbor locus. Importantly, effective gene editing is rate-limited by the delivery efficiency of gene editing vectors. Therefore, this protocol first focuses on preparation of iPSCs for transfection to achieve high nuclear delivery efficiency. When iPSCs are dissociated into single cells using a gentle-cell dissociation reagent and transfected using an optimized program, >50% cells can be induced to take up the large gene editing vectors. Because the AAVS1 locus is located in the intron of an active gene (PPP1R12C), a splicing acceptor (SA)-linked puromycin resistant gene (PAC) was used to select targeted iPSCs while excluding random integration-only and untransfected cells. This strategy greatly increases the chance of obtaining targeted clones, and can be used in other active gene targeting experiments as well. Two weeks after puromycin selection at the dose adjusted for the specific iPSC line, clones are ready to be picked by manual dissection of large, isolated colonies into smaller pieces that are transferred to fresh medium in a smaller well for further expansion and genetic and functional screening. One can follow this protocol to readily obtain multiple GFP reporter iPSC lines that are useful for in vivo and in vitro imaging and cell isolation.
机译:有针对性的转基因添加可以提供持久的基因表达,同时避免由病毒载体介导的随机整合引起的基因沉默和插入诱变。该协议描述了人类iPSC中通用且有效的转基因靶向添加平台,该平台基于已验证的开源TALEN和基因陷阱样供体的利用,以将转基因传递到安全的港口所在地。重要的是,有效的基因编辑受到基因编辑载体递送效率的限制。因此,该方案首先集中于制备用于转染的iPSC,以实现高核传递效率。当使用温和细胞解离试剂将iPSC解离为单个细胞并使用优化程序进行转染时,可以诱导> 50%的细胞吸收大基因编辑载体。因为AAVS1基因座位于活性基因(PPP1R12C)的内含子中,所以使用剪接受体(SA)连接的嘌呤霉素抗性基因(PAC)来选择靶向iPSC,同时排除了仅随机整合和未转染的细胞。这种策略大大增加了获得靶向克隆的机会,也可以用于其他活性基因靶向实验。在根据特定iPSC品系调整剂量的嘌呤霉素选择后两周,可以通过手动将大的分离的菌落解剖成较小的碎片来挑选克隆,将其转移到较小的孔中的新鲜培养基中,以进行进一步扩增以及遗传和功能筛选。可以遵循这一协议,轻松获得多个可用于体内和体外成像以及细胞分离的GFP报告基因iPSC细胞系。

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