CHEO Research Institute, Ottawa, ON, Canada.
Department of Pediatrics, Dalhousie University, Halifax, NS, Canada.
Methods Mol Biol. 2020;2115:385-405. doi: 10.1007/978-1-0716-0290-4_21.
Shortly after the development of the CRISPR/Cas9 system, it was recognized that it is prone to induce off-target mutations at significant frequencies. Therefore, there is a strong motivation to develop Cas9 enzymes with reduced off-target activity. Multiple rational design or selection approaches have been applied to develop several Cas9 versions with reduced off-target activities (high fidelity). To make these high-fidelity Cas9s available for model systems other than human cells and bacterial strains, as, for example, in zebrafish, new specialized expression vectors need to be developed. In this chapter, we focused on the HypaCas9 and HiFi Cas9 high-fidelity enzymes and incorporated the mutations of these Cas9 versions into a codon-optimized zebrafish Cas9 vector. This optimized vector was further improved by introducing an artificial polyadenine insert (A71) since polyadenylation is known to enhance mRNA translational efficiency. The Hypa-nCas9n and HiFi-nCas9n vectors were produced by single-site mutagenesis from pT3TS-nCas9n-A71 vector. We then tested the polyadenylated mRNAs for nCas9n, Hypa-nCas9n, HiFi-nCas9n, and HiFi-Cas9 protein for editing efficiency in five genome editing strategies and found that these high-fidelity Cas9 versions had different performances ranging from activity at 2-4 sites, where the wild-type nCas9n is active, indicating that these Cas9 versions have different sgRNA preferences. In summary, the developed new high-fidelity Cas9 vectors will enable researchers to perform much more accurate genome editing.
CRISPR/Cas9 系统发展不久后,人们就意识到它很容易在显著频率下诱导脱靶突变。因此,开发具有降低脱靶活性的 Cas9 酶具有很强的动力。已经应用了多种合理的设计或选择方法来开发几种具有降低脱靶活性(高保真度)的 Cas9 版本。为了使这些高保真 Cas9 可用于除人类细胞和细菌菌株以外的模型系统,例如在斑马鱼中,需要开发新的专门表达载体。在本章中,我们专注于 HypaCas9 和 HiFi Cas9 高保真酶,并将这些 Cas9 版本的突变纳入了优化的斑马鱼 Cas9 载体中。通过引入人工聚腺苷酸化插入物(A71)进一步改进了该优化载体,因为聚腺苷酸化已知可提高 mRNA 翻译效率。Hypa-nCas9n 和 HiFi-nCas9n 载体是通过单点突变从 pT3TS-nCas9n-A71 载体中产生的。然后,我们在五种基因组编辑策略中测试了 nCas9、Hypa-nCas9n、HiFi-nCas9n 和 HiFi-Cas9 蛋白的多聚腺苷酸化 mRNA 的编辑效率,发现这些高保真 Cas9 版本的性能不同,活性范围为 2-4 个位点,而野生型 nCas9n 在这些位点是活跃的,这表明这些 Cas9 版本具有不同的 sgRNA 偏好。总之,开发的新型高保真 Cas9 载体将使研究人员能够进行更精确的基因组编辑。