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Enhanced Specificity and Efficiency of the CRISPR/Cas9 System with Optimized sgRNA Parameters in Drosophila

机译:果蝇中具有优化的sgRNA参数的CRISPR / Cas9系统的增强的特异性和效率

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The CRISPR/Cas9 system has recently emerged as a powerful tool for functional genomic studies in Drosophila melanogaster. However, single-guide RNA (sgRNA) parameters affecting the specificity and efficiency of the system in flies are still not clear. Here, we found that off-target effects did not occur in regions of genomic DNA with three or more nucleotide mismatches to sgRNAs. Importantly, we document for a strong positive correlation between mutagenesis efficiency and sgRNA GC content of the six protospacer-adjacent motif-proximal nucleotides (PAMPNs). Furthermore, by injecting well-designed sgRNA plasmids at the optimal concentration we determined, we could efficiently generate mutations in four genes in one step. Finally, we generated null alleles of HP1a using optimized parameters through homology-directed repair and achieved an overall mutagenesis rate significantly higher than previously reported. Our work demonstrates a comprehensive optimization of sgRNA and promises to vastly simplify CRISPR/Cas9 experiments in Drosophila.
机译:CRISPR / Cas9系统最近成为果蝇功能基因组研究的强大工具。然而,尚不清楚影响果蝇系统特异性和效率的单向导RNA(sgRNA)参数。在这里,我们发现在与sgRNA具有三个或更多个核苷酸错配的基因组DNA区域中,未发生脱靶效应。重要的是,我们记录了诱变效率和六个原间隔物相邻基序近端核苷酸(PAMPNs)的sgRNA GC含量之间的强正相关。此外,通过以我们确定的最佳浓度注射精心设计的sgRNA质粒,我们可以一步一步有效地产生四个基因的突变。最后,我们通过优化的参数通过同源性指导的修复产生了HP1a的无效等位基因,并实现了总体诱变率大大高于以前报道的水平。我们的工作证明了sgRNA的全面优化,并有望大大简化果蝇中的CRISPR / Cas9实验。

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