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CAS9 transcriptional activators for target specificity screening and paired nickases for cooperative genome engineering

机译:用于靶标特异性筛选的CAS9转录激活因子和用于协作基因组工程的配对切口酶

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摘要

Prokaryotic type II CRISPR-Cas systems can be adapted to enable targeted genome modifications across a range of eukaryotes.. Here we engineer this system to enable RNA-guided genome regulation in human cells by tethering transcriptional activation domains either directly to a nuclease-null Cas9 protein or to an aptamer-modified single guide RNA (sgRNA). Using this functionality we developed a novel transcriptional activation–based assay to determine the landscape of off-target binding of sgRNA:Cas9 complexes and compared it with the off-target activity of transcription activator–like (TAL) effector proteins, . Our results reveal that specificity profiles are sgRNA dependent, and that sgRNA:Cas9 complexes and 18-mer TAL effector proteins can potentially tolerate 1–3 and 1–2 target mismatches, respectively. By engineering a requirement for cooperativity through offset nicking for genome editing or through multiple synergistic sgRNAs for robust transcriptional activation, we suggest methods to mitigate off-target phenomena. Our results expand the versatility of the sgRNA:Cas9 tool and highlight the critical need to engineer improved specificity.
机译:II型原核CRISPR-Cas系统可以进行改造,以实现跨一系列真核生物的靶向基因组修饰。。在这里,我们设计了这个系统,通过将转录激活结构域直接束缚至无核酸酶的Cas9蛋白或适配体修饰的单向导RNA(sgRNA),从而实现人细胞中RNA指导的基因组调控。使用此功能,我们开发了一种基于转录激活的新型测定方法,可确定sgRNA:Cas9复合物脱靶结合的情况,并将其与转录激活剂样(TAL)效应蛋白的脱靶活性进行比较,,< / sup>。我们的结果表明,特异性谱是sgRNA依赖性的,并且sgRNA:Cas9复合物和18-mer TAL效应蛋白可以分别耐受1–3和1-2个靶标错配。通过设计用于基因组编辑的偏移切口或通过多个协同sgRNA进行鲁棒转录激活来设计对协同性的要求,我们提出了减轻脱靶现象的方法。我们的结果扩大了sgRNA:Cas9工具的多功能性,并强调了工程改造更高特异性的关键需求。

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