Cas9
清脆的
核酸酶
生物
基因组编辑
放大器
计算生物学
引导RNA
遗传学
亚基因组mRNA
核酸内切酶
核糖核酸
基因组DNA
基因组
DNA
基因
基因组工程
聚合酶链反应
作者
Peter Cameron,Chris Fuller,Paul D. Donohoue,Brittnee N. Jones,Matthew S. Thompson,Matthew M. Carter,Scott Gradia,Bastien Vidal,Elizabeth Garner,Euan M. Slorach,Elaine K. Lau,Lynda Banh,Alexandra M. Lied,Leslie Edwards,Alexander Settle,Daniel Capurso,Víctor Llaca,Stéphane Deschamps,Mark Cigan,Joshua K. Young
出处
期刊:Nature Methods
[Nature Portfolio]
日期:2017-05-01
卷期号:14 (6): 600-606
被引量:468
摘要
RNA-guided CRISPR-Cas9 endonucleases are widely used for genome engineering, but our understanding of Cas9 specificity remains incomplete. Here, we developed a biochemical method (SITE-Seq), using Cas9 programmed with single-guide RNAs (sgRNAs), to identify the sequence of cut sites within genomic DNA. Cells edited with the same Cas9-sgRNA complexes are then assayed for mutations at each cut site using amplicon sequencing. We used SITE-Seq to examine Cas9 specificity with sgRNAs targeting the human genome. The number of sites identified depended on sgRNA sequence and nuclease concentration. Sites identified at lower concentrations showed a higher propensity for off-target mutations in cells. The list of off-target sites showing activity in cells was influenced by sgRNP delivery, cell type and duration of exposure to the nuclease. Collectively, our results underscore the utility of combining comprehensive biochemical identification of off-target sites with independent cell-based measurements of activity at those sites when assessing nuclease activity and specificity.
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