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利用 gRNA 和 CAS9 内切酶高效生成大规模基因组修饰小鼠。

Efficient generation of large-scale genome-modified mice using gRNA and CAS9 endonuclease.

机构信息

Department of Animal Resource Sciences, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Yayoi 1-1-1, Tokyo 113-8657, Japan.

出版信息

Nucleic Acids Res. 2013 Nov;41(20):e187. doi: 10.1093/nar/gkt772. Epub 2013 Aug 30.

Abstract

The generation of genome-modified animals is a powerful approach to analyze gene functions. The CAS9/guide RNA (gRNA) system is expected to become widely used for the efficient generation of genome-modified animals, but detailed studies on optimum conditions and availability are limited. In the present study, we attempted to generate large-scale genome-modified mice with an optimized CAS9/gRNA system, and confirmed the transmission of these mutations to the next generations. A comparison of different types of gRNA indicated that the target loci of almost all pups were modified successfully by the use of long-type gRNAs with CAS9. We showed that this system has much higher mutation efficiency and much lower off-target effect compared to zinc-finger nuclease. We propose that most of these off-target effects can be avoided by the careful control of CAS9 mRNA concentration and that the genome-modification efficiency depends rather on the gRNA concentration. Under optimized conditions, large-scale (~10 kb) genome-modified mice can be efficiently generated by modifying two loci on a single chromosome using two gRNAs at once in mouse zygotes. In addition, the normal transmission of these CAS9/gRNA-induced mutations to the next generation was confirmed. These results indicate that CAS9/gRNA system can become a highly effective tool for the generation of genome-modified animals.

摘要

基因组修饰动物的产生是分析基因功能的一种有力方法。CAS9/guide RNA(gRNA)系统有望被广泛用于高效产生基因组修饰动物,但关于最佳条件和可用性的详细研究有限。在本研究中,我们试图使用优化的 CAS9/gRNA 系统生成大规模的基因组修饰小鼠,并证实这些突变可传递给下一代。不同类型的 gRNA 的比较表明,使用长型 gRNA 与 CAS9 可成功修饰几乎所有幼鼠的靶标位点。与锌指核酸酶相比,我们发现该系统的突变效率更高,脱靶效应更低。我们提出,通过仔细控制 CAS9 mRNA 浓度,可以避免大多数脱靶效应,并且基因组修饰效率取决于 gRNA 浓度。在优化条件下,通过在小鼠受精卵中同时使用两个 gRNA 修饰单个染色体上的两个靶标位点,可以高效地生成大规模(~10 kb)基因组修饰小鼠。此外,还证实了这些 CAS9/gRNA 诱导的突变正常传递给下一代。这些结果表明,CAS9/gRNA 系统可以成为生成基因组修饰动物的一种非常有效的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d311/3814358/a66120f05a14/gkt772f1p.jpg

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