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Targeted and genome-wide sequencing reveal single nucleotide variations impacting specificity of Cas9 in human stem cells

机译:靶向和全基因组测序揭示单核苷酸变异影响人干细胞中Cas9的特异性

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摘要

CRISPR/Cas9 has demonstrated a high-efficiency in site-specific gene targeting. However, potential off-target effects of the Cas9 nuclease represent a major safety concern for any therapeutic application. Here, we knock out the Tafazzin gene by CRISPR/Cas9 in human-induced pluripotent stem cells with 54% efficiency. We combine whole-genome sequencing and deep-targeted sequencing to characterise the off-target effects of Cas9 editing. Whole-genome sequencing of Cas9-modified hiPSC clones detects neither gross genomic alterations nor elevated mutation rates. Deep sequencing of in silico predicted off-target sites in a population of Cas9-treated cells further confirms high specificity of Cas9. However, we identify a single high-efficiency off-target site that is generated by a common germline single-nucleotide variant (SNV) in our experiment. Based on in silico analysis, we estimate a likelihood of SNVs creating off-target sites in a human genome to be similar to 1.5-8.5%, depending on the genome and site-selection method, but also note that mutations might be generated at these sites only at low rates and may not have functional consequences. Our study demonstrates the feasibility of highly specific clonal ex vivo gene editing using CRISPR/Cas9 and highlights the value of whole-genome sequencing before personalised CRISPR design.
机译:CRISPR / Cas9在位点特异性基因靶向方面表现出很高的效率。但是,Cas9核酸酶的潜在脱靶作用代表了任何治疗应用的主要安全隐患。在这里,我们用CRISPR / Cas9敲除了人诱导的多能干细胞中的Tafazzin基因,效率为54%。我们结合了全基因组测序和深度靶向测序来表征Cas9编辑的脱靶效应。 Cas9修饰的hiPSC克隆的全基因组测序既未检测到总体基因组变化,也未检测到突变率升高。在经过Cas9处理的细胞群体中,计算机模拟预测的脱靶位点的深度测序进一步证实了Cas9的高特异性。但是,在我们的实验中,我们确定了由常见种系单核苷酸变体(SNV)生成的单个高效脱靶位点。根据计算机分析,我们估计SNV在人类基因组中形成脱靶位点的可能性大约为1.5-8.5%,具体取决于基因组和位点选择方法,但还要注意,突变可能会在这些位点产生网站价格低廉,可能不会产生功能后果。我们的研究证明了使用CRISPR / Cas9进行高度特异性的克隆离体基因编辑的可行性,并强调了个性化CRISPR设计之前全基因组测序的价值。

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