Department of Chemistry , Seoul National University , Seoul 08826 , Republic of Korea.
Department of Research and Development , LumiMac, Inc. , Seoul 05805 , Republic of Korea.
J Am Chem Soc. 2018 Jun 27;140(25):7778-7781. doi: 10.1021/jacs.8b03102. Epub 2018 Jun 13.
Understanding the underlying principles for the target-specific nuclease activity of CRISPR/Cas9 is a prerequisite to minimize its off-target DNA cleavage for genome engineering applications. Here, we show that the noncatalytic REC2 domain of Cas9 nuclease plays a crucial role in off-target discrimination. Using single-molecule fluorescence methods, we investigate conformational dynamics of the non-target strand (NTS) of DNA interacting with Cas9 and find that REC2 regulates the NTS rearrangement for cleavage reaction with the help of positively charged residues on its surface. This mechanistic model for the target specificity of Cas9 provides molecular insights for the rational approach to Cas9 engineering for highly specific genome editing.
理解 CRISPR/Cas9 对靶标核酸酶活性的潜在原理是最小化其用于基因组工程应用的脱靶 DNA 切割的前提条件。在这里,我们表明 Cas9 核酸酶的非催化性 REC2 结构域在脱靶区分中起着关键作用。使用单分子荧光方法,我们研究了与 Cas9 相互作用的非靶标链 (NTS) 的构象动力学,并发现 REC2 通过其表面上的正电荷残基调节 NTS 的重排以进行切割反应。这种 Cas9 靶标特异性的机械模型为 Cas9 的合理工程提供了分子见解,以实现高度特异性的基因组编辑。