Division of Applied Biosciences, Graduate School of Agriculture, Kyoto University, Kyoto, Japan.
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kyoto, Japan.
Dev Growth Differ. 2020 Dec;62(9):554-567. doi: 10.1111/dgd.12700.
The CRISPR/Cas system offers new opportunities for targeted gene modifications in a wide range of organisms. In medaka (Oryzias latipes), a vertebrate model organism, a wild-type Cas9-based approach is commonly used to establish desired strains, however, its use in lethal genes is still challenging due to excess gene disruptions triggered by DNA double strand breaks (DSBs). To overcome this problem, we aimed to develop a new knock-in system using Cas9 nickase (Cas9n) that can reduce DNA DSBs. We revealed that Cas9n allowed reduction of the DSB-induced unwanted mutagenesis via non-homologous end-joining at both on- and off- target sites. Further, with a new donor plasmid (p2BaitD) that provides a linear template through Cas9n-mediated nicks, we successfully integrated reporter cassettes via homology-directed repair (HDR) into all three loci tested, including a lethal gene. In the experiment targeting the lethal gene, the combination of p2BaitD and Cas9n achieved higher survival rates than the Cas9-based approach, which enabled the desired knock-in founders. Additionally, through a technical blend of our knock-in system with a recently developed One-step mating protocol, we successfully established a homozygous knock-in strain in one generation period. This study presents evidence of an effective method to generate an HDR-mediated gene knock-in in medaka and other organisms, which is useful for establishing screening platforms for genes or drugs toxicity or other applications.
CRISPR/Cas 系统为在广泛的生物中进行靶向基因修饰提供了新的机会。在斑马鱼(Oryzias latipes)这种脊椎动物模式生物中,通常使用基于野生型 Cas9 的方法来建立所需的品系,然而,由于 DNA 双链断裂(DSB)引发的基因过度破坏,其在致死基因中的应用仍然具有挑战性。为了克服这个问题,我们旨在开发一种新的基于 Cas9 切口酶(Cas9n)的基因敲入系统,该系统可以减少 DNA DSB。我们发现 Cas9n 通过非同源末端连接在靶位和脱靶位都可以减少 DSB 诱导的非预期突变。此外,通过使用新的供体质粒(p2BaitD),该质粒通过 Cas9n 介导的切口提供线性模板,我们成功地通过同源定向修复(HDR)将报告基因盒整合到所有三个测试的基因座中,包括一个致死基因。在针对致死基因的实验中,p2BaitD 和 Cas9n 的组合比基于 Cas9 的方法实现了更高的存活率,这使得我们能够获得所需的基因敲入的起始细胞。此外,通过将我们的基因敲入系统与最近开发的一步交配协议的技术融合,我们成功地在一个世代周期内建立了一个纯合基因敲入品系。这项研究为在斑马鱼和其他生物中产生 HDR 介导的基因敲入提供了一种有效的方法,这对于建立基因或药物毒性筛选平台或其他应用非常有用。