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Generation and Characterization of a MYF5 Reporter Human iPS Cell Line Using CRISPR/Cas9 Mediated Homologous Recombination

机译:使用CRISPR / Cas9介导的同源重组产生MYF5报告基因人类iPS细胞系并对其进行表征

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摘要

Human iPS cells hold great promise for disease modeling and treatment of degenerative disorders including muscular dystrophies. Although a few research groups have used them for skeletal muscle differentiation, most were based on gene over-expression or long-term mesenchymal differentiation and retrospective identification of myogenic cells. Therefore, this study was aimed to generate a knock-in reporter human iPS cell line for MYF5, as an early myogenic specification gene, to allow prospective identification and purification of myogenic progenitors from human iPS cells. By using a CRISPR/Cas9 double nickase strategy, a 2A-GFP reporter was inserted before the stop codon of the MYF5 gene using homologous recombination. This approach allowed for highly efficient in-frame targeting of MYF5 in human iPS cells. Furthermore, in order to prove the reporter function, endogenous MYF5 expression was induced using a novel dead Cas9-VP160 transcriptional activator. Induced clones demonstrated appropriate MYF5-GFP co-expression. Finally, to confirm the differentiation potential, reporter human iPS clones were differentiated through embryoid body method and MYF5-GFP+ myogenic cells were sorted and characterized. These data provides valuable guidelines for generation of knock-in reporter human iPS cell lines for myogenic genes which can be used for disease modeling, drug screening, gene correction and future in vivo applications.
机译:人类iPS细胞在疾病建模和退行性疾病(包括肌肉营养不良)的治疗方面具有广阔的前景。尽管少数研究小组将其用于骨骼肌分化,但大多数研究是基于基因过度表达或长期间充质分化以及对成肌细胞的回顾性鉴定。因此,本研究旨在为MYF5生成敲入报告基因的人iPS细胞系,作为早期的成肌规范基因,以允许从人iPS细胞中鉴定和纯化成肌祖细胞。通过使用CRISPR / Cas9双切口酶策略,使用同源重组将2A-GFP报告基因插入MYF5基因的终止密码子之前。这种方法允许在人iPS细胞中对MYF5进行高效的框内靶向。此外,为了证明报告基因功能,使用新型的死Cas9-VP160转录激活因子诱导了内源性MYF5表达。诱导的克隆证明合适的MYF5-GFP共表达。最后,为了证实其分化潜能,通过拟胚体方法分化了报告人的iPS克隆,并对MYF5-GFP + 肌原细胞进行了分类和鉴定。这些数据为生成用于成肌基因的敲入报告基因人类iPS细胞系提供了有价值的指导,可将其用于疾病建模,药物筛选,基因校正和将来的体内应用。

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