Laboratory for Animal Resources and Genetic Engineering, RIKEN Center for Biosystems Dynamics Research, 2-2-3 Minatojima Minami-machi, Chuou-ku, Kobe 650-0047, Japan.
Laboratory for Animal Resources and Genetic Engineering, RIKEN Center for Biosystems Dynamics Research, 2-2-3 Minatojima Minami-machi, Chuou-ku, Kobe 650-0047, Japan; Mouse Genetics Core Facility, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.
Cell Rep. 2020 May 19;31(7):107653. doi: 10.1016/j.celrep.2020.107653.
In CRISPR-Cas9-assisted knockin (KI) in zygotes, a remaining challenge is routinely achieving high-efficiency KI of large (kilobase-sized) DNA elements. Here, we focus on the timing of pronuclear injection and establish a reliable homologous recombination (HR)-based method to generate large KIs in zygotes compared with two other types of KI strategies involving distinct DNA repair pathways. At the ROSA26 locus, pronuclear injection with CRISPR RNA (crRNA), trans-activating crRNA (tracrRNA), and Cas9 protein at the S phase by using the HR-based method yields the most efficient and accurate KIs (up to 70%). This approach is also generally effective for generating large KI alleles at other gene loci. We further apply our method to efficiently obtain biallelic ROSA26 KIs by sequential injection into both pronuclei. Our results suggest that delivery of genome editing components and donor DNA into S-phase zygotes is critical for efficient KI of large DNA elements.
在胚胎期细胞中借助 CRISPR-Cas9 实现基因敲入(KI)时,一个常见的挑战是如何高效地实现大片段(千碱基大小)DNA 元件的基因敲入。在此,我们聚焦于原核注射的时间,并建立了一种可靠的基于同源重组(HR)的方法,与另外两种涉及不同 DNA 修复途径的基因敲入策略相比,该方法可提高胚胎期细胞中大片段基因敲入的效率。在 ROSA26 基因座上,通过 HR 方法,在 S 期将 CRISPR RNA(crRNA)、反式激活 crRNA(tracrRNA)和 Cas9 蛋白一起注入原核,可实现最高效和最精确的基因敲入(高达 70%)。该方法对于在其他基因座生成大片段基因敲入等位基因也通常是有效的。我们进一步将该方法应用于通过依次向两个原核注射来高效获得双等位基因 ROSA26 基因敲入。我们的结果表明,将基因组编辑组件和供体 DNA 递送至 S 期胚胎期细胞对于高效实现大片段 DNA 元件的基因敲入至关重要。