Key Laboratory of Regenerative Biology, South China Institute for Stem Cell Biology and Regenerative Medicine, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, Guangdong 510530, China.
Development. 2014 Feb;141(3):707-14. doi: 10.1242/dev.099853. Epub 2014 Jan 8.
For the emerging amphibian genetic model Xenopus tropicalis targeted gene disruption is dependent on zinc-finger nucleases (ZFNs) or transcription activator-like effector nucleases (TALENs), which require either complex design and selection or laborious construction. Thus, easy and efficient genome editing tools are still highly desirable for this species. Here, we report that RNA-guided Cas9 nuclease resulted in precise targeted gene disruption in all ten X. tropicalis genes that we analyzed, with efficiencies above 45% and readily up to 100%. Systematic point mutation analyses in two loci revealed that perfect matches between the spacer and the protospacer sequences proximal to the protospacer adjacent motif (PAM) were essential for Cas9 to cleave the target sites in the X. tropicalis genome. Further study showed that the Cas9 system could serve as an efficient tool for multiplexed genome engineering in Xenopus embryos. Analysis of the disruption of two genes, ptf1a/p48 and tyrosinase, indicated that Cas9-mediated gene targeting can facilitate direct phenotypic assessment in X. tropicalis embryos. Finally, five founder frogs from targeting of either elastase-T1, elastase-T2 or tyrosinase showed highly efficient transmission of targeted mutations into F1 embryos. Together, our data demonstrate that the Cas9 system is an easy, efficient and reliable tool for multiplex genome editing in X. tropicalis.
对于新兴的两栖类遗传模型非洲爪蟾,靶向基因敲除依赖于锌指核酸酶(ZFNs)或转录激活因子样效应核酸酶(TALENs),这需要复杂的设计和选择或繁琐的构建。因此,对于这种物种来说,仍然非常需要简单高效的基因组编辑工具。在这里,我们报告说 RNA 指导的 Cas9 核酸酶导致我们分析的所有十个非洲爪蟾基因的精确靶向基因敲除,效率超过 45%,最高可达 100%。在两个基因座上的系统点突变分析表明,在靠近前导序列相邻基序(PAM)的间隔区和原间隔区序列之间的完全匹配对于 Cas9 在非洲爪蟾基因组中切割靶位点是必不可少的。进一步的研究表明,Cas9 系统可以作为在非洲爪蟾胚胎中进行多重基因组工程的有效工具。对两个基因(ptf1a/p48 和酪氨酸酶)的敲除分析表明,Cas9 介导的基因靶向可以促进非洲爪蟾胚胎中直接表型评估。最后,从靶向弹性蛋白酶-T1、弹性蛋白酶-T2 或酪氨酸酶的五个创始蛙中,靶向突变高效地传递到 F1 胚胎中。总之,我们的数据表明,Cas9 系统是一种在非洲爪蟾中进行多重基因组编辑的简单、高效和可靠的工具。