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Validation of gene editing efficiency with CRISPR-Cas9 system directly in rat zygotes using electroporation mediated delivery and embryo culture

机译:使用电穿孔介导的递送和胚胎培养验证CRISPR-CAS9系统的基因编辑效率

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摘要

Successful use of the CRISPR-Cas9 system for gene manipulation relies on identifying effective and efficient guide RNA sequences (gRNAs). When the goal is to create transgenic animal/rodent models by knocking-in desired sequences using homology-directed repair (HDR), selecting effective guides becomes even more critical to minimize developmental time and resources. Currently, validation experiments for gRNAs for generating rat models are carried out using immortalized rat cells. However, there are several limitations with using such cell lines, including ploidy of the genome, non-predictive transfection efficiency, and the ability to identify gene modifications efficiently within diverse cell populations. Since embryos are authentic representatives of live animals compared to cell lines, validating CRISPR guides for their nuclease activity in freshly isolated embryos will provide greater accuracy of in vivo gene editing efficiency. In contrast to microinjections, delivery by electroporation is a more accessible method that can be simple and does not require special skills and equipment. We demonstrate an accessible workflow to either delete or edit target genes in vivo in rats using the efficient editing of a human mutation in alpha7 nicotinic acetylcholine receptor subunit (CHRNA7) ortholog using electroporation as a delivery method for CRISPR-Cas9 ribonucleoprotein complexes in rat embryos.
机译:成功使用CRISPR-CAS9系统进行基因操作依赖于识别有效和有效的指导RNA序列(GRNA)。当目标是通过使用同源导向的修复(HDR)通过敲入所需序列来创建转基因动物/啮齿动物模型时,选择有效的引导件对最小化发展时间和资源变得更为重要。目前,使用永生化大鼠细胞进行用于产生大鼠模型的GRNA的验证实验。然而,使用这种细胞系有几个限制,包括基因组,非预测性转染效率的倍率,以及有效地在不同的细胞群内鉴定基因修饰的能力。由于胚胎与细胞系相比,胚胎是活体动物的正宗代表,因此在新鲜分离的胚胎中验证其核酸酶活性的CRICPR指南将提供更高的体内基因编辑效率的准确性。与微注射相比,通过电穿孔的递送是一种更可接近的方法,可以简单,不需要特殊技能和设备。我们使用α7烟碱乙酰胆碱受体亚基(ChrNA7)正常的人体突变使用电穿孔作为大鼠胚胎Cas9核糖蛋白复合物的递送方法,证明了一种可访问的工作流程,以便在大鼠中删除或编辑体内体内的靶基因。

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