Department of Systems Biotechnology and Institute of Microbiomics, Chung-Ang University, Anseong 17546, Korea.
Int J Mol Sci. 2021 Jun 16;22(12):6457. doi: 10.3390/ijms22126457.
The CRISPR/Cas9 system has recently emerged as a useful gene-specific editing tool. However, this approach occasionally results in the digestion of both the DNA target and similar DNA sequences due to mismatch tolerance, which remains a significant drawback of current genome editing technologies. However, our study determined that even single-base mismatches between the target DNA and 5'-truncated sgRNAs inhibited target recognition. These results suggest that a 5'-truncated sgRNA/Cas9 complex could be used to negatively select single-base-edited targets in microbial genomes. Moreover, we demonstrated that the 5'-truncated sgRNA method can be used for simple and effective single-base editing, as it enables the modification of individual bases in the DNA target, near and far from the 5' end of truncated sgRNAs. Further, 5'-truncated sgRNAs also allowed for efficient single-base editing when using an engineered Cas9 nuclease with an expanded protospacer adjacent motif (PAM; 5'-NG), which may enable whole-genome single-base editing.
CRISPR/Cas9 系统最近已成为一种有用的基因特异性编辑工具。然而,这种方法偶尔会由于错配容忍而导致 DNA 靶标和类似的 DNA 序列被消化,这仍然是当前基因组编辑技术的一个重大缺陷。然而,我们的研究表明,即使靶 DNA 与 5'-截短 sgRNA 之间存在单个碱基错配,也会抑制靶标识别。这些结果表明,5'-截短 sgRNA/Cas9 复合物可用于在微生物基因组中负向选择单个碱基编辑的靶标。此外,我们证明了 5'-截短 sgRNA 方法可用于简单有效的单碱基编辑,因为它能够修饰 DNA 靶标中靠近和远离截短 sgRNA5'端的单个碱基。此外,当使用具有扩展的原间隔序列邻近基序(PAM;5'-NG)的工程化 Cas9 核酸酶时,5'-截短 sgRNA 也允许高效的单碱基编辑,这可能能够实现全基因组单碱基编辑。