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Dimeric CRISPR RNA-guided Fokl nucleases for highly specific genome editing

机译:二聚体CRISPR RNA引导的Fokl核酸酶用于高度特异性的基因组编辑

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摘要

Monomeric CRISPR-Cas9 nucleases are widely used for targeted genome editing but can induce unwanted off-target mutations with high frequencies. Here we describe dimeric RNA-guided FokI nucleases (RFNs) that can recognize extended sequences and edit endogenous genes with high efficiencies in human cells. RFN cleavage activity depends strictly on the binding of two guide RNAs (gRNAs) to DNA with a defined spacing and orientation substantially reducing the likelihood that a suitable target site will occur more than once in the genome and therefore improving specificities relative to wild-type Cas9 monomers. RFNs guided by a single gRNA generally induce lower levels of unwanted mutations than matched monomeric Cas9 nickases. In addition, we describe a simple method for expressing multiple gRNAs bearing any 5' end nucleotide, which gives dimeric RFNs a broad targeting range. RFNs combine the ease of RNA-based targeting with the specificity enhancement inherent to dimerization and are likely to be useful in applications that require highly precise genome editing.
机译:单体CRISPR-Cas9核酸酶被广泛用于靶向基因组编辑,但可以诱导高频率的不需要的脱靶突变。在这里,我们描述了二聚体RNA引导的FokI核酸酶(RFN),它可以识别扩展序列并在人类细胞中高效编辑内源基因。 RFN裂解活性严格取决于两个指​​导RNA(gRNA)与具有确定的间隔和方向的DNA的结合,从而大大降低了合适的靶位点在基因组中多次出现的可能性,因此相对于野生型Cas9而言提高了特异性单体。由单个gRNA引导的RFN通常会比匹配的单体Cas9切口酶诱导出更低水平的有害突变。另外,我们描述了一种表达带有任何5'端核苷酸的多个gRNA的简单方法,该方法使二聚RFN具有广泛的靶向范围。 RFN将基于RNA的靶向的简便性与二聚化固有的特异性增强相结合,在需要高度精确的基因组编辑的应用中可能很有用。

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