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首页> 外文期刊>Cytology and genetics >Consistent Production of Mice with Conditional Knockout Alleles by CRISPR/Cas9-Mediated Genome Editing Using Two Guides/Two Oligos Approach
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Consistent Production of Mice with Conditional Knockout Alleles by CRISPR/Cas9-Mediated Genome Editing Using Two Guides/Two Oligos Approach

机译:用两个指南/两种寡核苷酸接近通过CRISPR / CAS9介导的基因组编辑的条件淘汰等位基因一致的小鼠生产

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Gene targeting is extensively used to generate designer mouse mutants and to study gene function in vivo. Knockout mice that harbor a null allele in their germline provide appropriate genetic models of inherited diseases and often exhibit embryonic or early postnatal lethality. To study gene function in adult mice and in selected cell types, a refined strategy for conditional gene inactivation has been developed that relies on the DNA recombinase Cre and its recognition (loxP) sites. This process has traditionally relied on the complex process involving genome editing in embryonic stem (ES) cells despite its limitations, including incorrect targeting or cassette structure, and difficulties with germline transmission of the allele from chimeric mice. CRISPR-Cas9 gene editing technology has considerably facilitated the generation of mouse knockout alleles, relieving many of the cumbersome and time-consuming steps of traditional mouse ES cell technology. However, the generation of conditional knockout alleles remains an important challenge. An earlier study reported up to 16% efficiency in generating conditional knockout alleles in mice using 2 single guide RNAs (sgRNA) and 2 single-stranded oligonucleotides (ssODN), which has been questioned by another report combining data from multiple transgenic cores. With the advent of CRISPR/Cas9 as a mouse genome modification tool, we assessed the efficiency of using this method in creating conditional targeted alleles in three genes, phosphatase and actin regulator 1 (Phactr1), apolipoprotein A-I (ApoA1), and actin-related protein T2 (Actrt2). Even though overall success rate was low-about 2.5%-we show that it's possible to reliably generate conditional knockout alleles using CRISPR/Cas9 on a consistent basis.
机译:基因靶向广泛用于产生设计者小鼠突变体并在体内研究基因功能。覆盖其种系中含有零等位基因的敲除小鼠提供了遗传疾病的适当遗传模型,通常表现出胚胎或早期的后杀伤性。为了研究成人小鼠和所选细胞类型中的基因功能,已经开发了一种依赖于DNA重组酶CRE及其识别(LOXP)位点的有条件基因失活的精制策略。该方法传统上依赖于涉及胚胎茎(ES)细胞中的基因组编辑的复杂过程,尽管其限制,包括不正确的靶向或盒结构,以及来自嵌合小鼠的等位基因的种系传递困难。 CRISPR-CAS9基因编辑技术大大促进了小鼠敲除等位基因的产生,减轻了传统小鼠ES技术的许多繁琐耗费步骤。然而,条件淘汰等位基因的产生仍然是一个重要的挑战。早期的研究报告了在使用2个单个导向RNA(SGRNA)和2个单链寡核苷酸(SSODN)中产生条件淘汰等位基因的效率高达16%,其通过另一个报告组合来自多个转基因核心的另一个报告。随着CRISPR / CAS9作为小鼠基因组改性工具的出现,我们评估了使用该方法在三种基因,磷酸酶和肌动蛋白调节剂1(PHACTR1),载脂蛋白AI(APOA1)中产生条件靶向等位基因的效率,以及acc蛋白相关的蛋白质T2(ACTRT2)。尽管整体成功率低 - 约2.5% - 我们表明,可以在一致的基础上使用CRISPR / CAS9可靠地产生条件淘汰等位基因。

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