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向合子提供母体Cas9有助于高效生成位点特异性突变小鼠模型。

Maternal Supply of Cas9 to Zygotes Facilitates the Efficient Generation of Site-Specific Mutant Mouse Models.

作者信息

Cebrian-Serrano Alberto, Zha Shijun, Hanssen Lars, Biggs Daniel, Preece Christopher, Davies Benjamin

机构信息

Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, United Kingdom.

MRC Weatherall Institute of Molecular Medicine, University of Oxford, Oxford, United Kingdom.

出版信息

PLoS One. 2017 Jan 12;12(1):e0169887. doi: 10.1371/journal.pone.0169887. eCollection 2017.

Abstract

Genome manipulation in the mouse via microinjection of CRISPR/Cas9 site-specific nucleases has allowed the production time for genetically modified mouse models to be significantly reduced. Successful genome manipulation in the mouse has already been reported using Cas9 supplied by microinjection of a DNA construct, in vitro transcribed mRNA and recombinant protein. Recently the use of transgenic strains of mice overexpressing Cas9 has been shown to facilitate site-specific mutagenesis via maternal supply to zygotes and this route may provide an alternative to exogenous supply. We have investigated the feasibility of supplying Cas9 genetically in more detail and for this purpose we report the generation of a transgenic mice which overexpress Cas9 ubiquitously, via a CAG-Cas9 transgene targeted to the Gt(ROSA26)Sor locus. We show that zygotes prepared from female mice harbouring this transgene are sufficiently loaded with maternally contributed Cas9 for efficient production of embryos and mice harbouring indel, genomic deletion and knock-in alleles by microinjection of guide RNAs and templates alone. We compare the mutagenesis rates and efficacy of mutagenesis using this genetic supply with exogenous Cas9 supply by either mRNA or protein microinjection. In general, we report increased generation rates of knock-in alleles and show that the levels of mutagenesis at certain genome target sites are significantly higher and more consistent when Cas9 is supplied genetically relative to exogenous supply.

摘要

通过显微注射CRISPR/Cas9位点特异性核酸酶对小鼠进行基因组操作,可显著缩短转基因小鼠模型的制作时间。已有报道称,通过显微注射DNA构建体、体外转录的mRNA和重组蛋白所提供的Cas9,成功实现了对小鼠的基因组操作。最近的研究表明,使用过表达Cas9的转基因小鼠品系,通过向受精卵提供母体来源的Cas9,有助于实现位点特异性诱变,这种途径可能是外源供应的一种替代方法。我们更详细地研究了通过基因方式供应Cas9的可行性,为此我们报告了一种转基因小鼠的产生,该小鼠通过靶向Gt(ROSA26)Sor位点的CAG-Cas9转基因,全身过表达Cas9。我们发现,由携带该转基因的雌性小鼠制备的受精卵,通过单独显微注射引导RNA和模板,能够充分获得母体提供的Cas9,从而高效产生携带插入缺失、基因组缺失和敲入等位基因的胚胎和小鼠。我们比较了使用这种基因供应方式与通过mRNA或蛋白质显微注射进行外源Cas9供应时的诱变率和诱变效果。总体而言,我们报告了敲入等位基因产生率的提高,并表明相对于外源供应,当通过基因方式供应Cas9时,在某些基因组靶位点的诱变水平显著更高且更一致。

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