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Improving CRISPR-Cas nuclease specificity using truncated guide RNAs

机译:使用截短的指导RNA改善CRISPR-Cas核酸酶特异性

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摘要

Clustered, regularly interspaced, short palindromic repeat (CRISPR) RNA-guided nucleases (RGNs) are highly efficient genome editing tools(1-3). CRISPR-associated 9 (Cas9) RGNs are directed to genomic loci by guide RNAs (gRNAs) containing 20 nucleotides that are complementary to a target DNA sequence. However, RGNs can induce mutations at sites that differ by as many as five nucleotides from the intended target(4-6). Here we report that truncated gRNAs, with shorter regions of target complementarity <20 nucleotides in length, can decrease undesired mutagenesis at some off-target sites by 5,000-fold or more without sacrificing on-target genome editing efficiencies. In addition, use of truncated gRNAs can further reduce off-target effects induced by pairs of Cas9 variants that nick DNA (paired nickases). Our results delineate a simple, effective strategy to improve the specificities of Cas9 nucleases or paired nickases.
机译:簇状,规则间隔,短回文重复(CRISPR)RNA引导的核酸酶(RGN)是高效的基因组编辑工具(1-3)。 CRISPR相关的9个(Cas9)RGN通过包含20个与目标DNA序列互补的核苷酸的引导RNA(gRNA)定向到基因组位点。然而,RGNs可以在与预期靶点相差多达五个核苷酸的位点处诱发突变(4-6)。在这里我们报道,具有小于20个核苷酸长度的靶标互补性的较短区域的截短的gRNA,可以在不影响靶标基因组编辑效率的情况下,将某些脱靶位点的不希望的诱变降低5,000倍或更多。另外,使用截短的gRNA可以进一步减少由成对的DNA切口的Cas9变异体(成对的切口酶)引起的脱靶效应。我们的研究结果描述了一种简单有效的策略,可改善Cas9核酸酶或配对切口酶的特异性。

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