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Highly efficient biallelic genome editing of human ES/iPS cells using a CRISPR/Cas9 or TALEN system

机译:使用CRISPR / CAS9或TALEN系统对人ES / IPS细胞进行高效的双胞胎基因组编辑

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摘要

Genome editing research of human ES/iPS cells has been accelerated by clustered regularly interspaced short palindromic repeats/CRISPR-associated 9 (CRISPR/Cas9) and transcription activator-like effector nucleases (TALEN) technologies. However, the efficiency of biallelic genetic engineering in transcriptionally inactive genes is still low, unlike that in transcriptionally active genes. To enhance the biallelic homologous recombination efficiency in human ES/iPS cells, we performed screenings of accessorial genes and compounds. We found that RAD51 overexpression and valproic acid treatment enhanced biallelic-targeting efficiency in human ES/iPS cells regardless of the transcriptional activity of the targeted locus. Importantly, RAD51 overexpression and valproic acid treatment synergistically increased the biallelic homologous recombination efficiency. Our findings would facilitate genome editing study using human ES/iPS cells.
机译:通过聚类定期间隙的短语重复/ CRISPR相关的9(CRISPR / CAS9)和转录激活剂样效应核酸酶(TALEN)技术已经加速了人ES / IPS细胞的基因组编辑研究。 然而,与转录活性基因中的双重非活性基因中的双胞胎基因工程效率仍然很低。 为了增强人ES / IPS细胞中的双曲线同源重组效率,我们进行了辅助基因和化合物的筛选。 我们发现Rad51过表达和丙戊酸处理可提高人ES / IPS细胞中的双层靶向效率,而不管靶向基因座的转录活性如何。 重要的是,Rad51过表达和丙戊酸治疗协同增加了双腿同源重组效率。 我们的研究结果将促进使用人ES / IPS细胞的基因组编辑研究。

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