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Optimization of the production of knock-in alleles by CRISPR/Cas9 microinjection into the mouse zygote

机译:CRISPR / CAS9显微注射进入小鼠精益率的敲击等位基因的优化

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Microinjection of the CRISPR/Cas9 system in zygotes is an efficient and comparatively fast method to generate genetically modified mice. So far, only few knock-in mice have been generated using this approach, and because no systematic study has been performed, parameters controlling the efficacy of CRISPR/Cas9-mediated targeted insertion are not fully established. Here, we evaluated the effect of several parameters on knock-in efficiency changing only one variable at a time. We found that knock-in efficiency was dependent on injected Cas9 mRNA and single-guide RNA concentrations and that cytoplasmic injection resulted in more genotypic complexity compared to pronuclear injection. Our results also indicated that injection into the pronucleus compared to the cytoplasm is preferable to generate knock-in alleles with an oligonucleotide or a circular plasmid. Finally, we showed that Cas9D10A nickase variant was less efficient than wild-type Cas9 for generating knock-in alleles and caused a higher rate of mosaicism. Thus, our study provides valuable information that will help to improve the future production of precise genetic modifications in mice.
机译:在Zygotes中的CRISPR / CAS9系统的显微注射是一种有效且相对快的方法,用于产生遗传修饰的小鼠。到目前为止,只有很少的敲击小鼠使用这种方法产生,因为没有进行系统研究,因此不完全建立控制CRISPR / CAS9介导的靶向插入的功效的参数。在这里,我们评估了几个参数对敲击效率的影响一次只改变一个变量。我们发现敲击效率依赖于注射的Cas9 mRNA和单引导RNA浓度,并且与经核注射相比,细胞质注射导致更基因型复杂性。我们的结果表明,与细胞质相比,注射到原核中,优选用寡核苷酸或圆形质粒产生敲击等位基因。最后,我们展示Cas9d10a酸氨酸酶变体比野生型Cas9效率低,用于产生敲击等位基因并导致更高的镶嵌速率。因此,我们的研究提供了有价值的信息,有助于改善小鼠未来生产精确的遗传修饰。

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