School of Ph.D. Studies, Semmelweis University, Budapest, Hungary.
Institute of Enzymology, Research Centre for Natural Sciences of the Hungarian Academy of Sciences, Budapest, Hungary.
DNA Res. 2017 Dec 1;24(6):609-621. doi: 10.1093/dnares/dsx029.
The efficacies of guide RNAs (gRNAs), the short RNA molecules that bind to and determine the sequence specificity of the Streptococcus pyogenes Cas9 nuclease, to mediate DNA cleavage vary dramatically. Thus, the selection of appropriate target sites, and hence spacer sequence, is critical for most applications. Here, we describe a simple, unparalleled method for experimentally pre-testing the efficiencies of various gRNAs targeting a gene. The method explores NHEJ-cloning, genomic integration of a GFP-expressing plasmid without homologous arms and linearized in-cell. The use of 'self-cleaving' GFP-plasmids containing universal gRNAs and corresponding targets alleviates cloning burdens when this method is applied. These universal gRNAs mediate efficient plasmid cleavage and are designed to avoid genomic targets in several model species. The method combines the advantages of the straightforward FACS detection provided by applying fluorescent reporter systems and of the PCR-based approaches being capable of testing targets in their genomic context, without necessitating any extra cloning steps. Additionally, we show that NHEJ-cloning can also be used in mammalian cells for targeted integration of donor plasmids up to 10 kb in size, with up to 30% efficiency, without any selection or enrichment.
向导 RNA(gRNA)的功效,即与结合并确定酿脓链球菌 Cas9 核酸酶序列特异性的短 RNA 分子,介导 DNA 切割的功效差异很大。因此,选择合适的靶位点,因此也选择合适的间隔序列,对于大多数应用都至关重要。在这里,我们描述了一种简单的、无与伦比的方法,用于实验性地预先测试针对基因的各种 gRNA 的效率。该方法探索了非同源末端连接(NHEJ)克隆,在没有同源臂的情况下将 GFP 表达质粒整合到基因组中,并在线性化细胞内进行。使用含有通用 gRNA 和相应靶标的“自我切割”GFP 质粒,当应用这种方法时,可以减轻克隆负担。这些通用 gRNA 介导有效的质粒切割,并且被设计为避免几种模型物种中的基因组靶标。该方法结合了应用荧光报告系统提供的直接流式细胞术检测的优点,以及能够在基因组背景下测试靶标的基于 PCR 的方法的优点,而无需任何额外的克隆步骤。此外,我们还表明,NHEJ 克隆也可以用于哺乳动物细胞中,以高达 30%的效率,在没有任何选择或富集的情况下,将长达 10kb 的供体质粒靶向整合,效率高达 30%。