Roy J. Carver Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, IA, USA.
Nucleic Acids Res. 2024 Sep 9;52(16):9343-9359. doi: 10.1093/nar/gkae613.
Cas12a is the immune effector of type V-A CRISPR-Cas systems and has been co-opted for genome editing and other biotechnology tools. The specificity of Cas12a has been the subject of extensive investigation both in vitro and in genome editing experiments. However, in vitro studies have often been performed at high magnesium ion concentrations that are inconsistent with the free Mg2+ concentrations that would be present in cells. By profiling the specificity of Cas12a orthologs at a range of Mg2+ concentrations, we find that Cas12a switches its specificity depending on metal ion concentration. Lowering Mg2+ concentration decreases cleavage defects caused by seed mismatches, while increasing the defects caused by PAM-distal mismatches. We show that Cas12a can bind seed mutant targets more rapidly at low Mg2+ concentrations, resulting in faster cleavage. In contrast, PAM-distal mismatches cause substantial defects in cleavage following formation of the Cas12a-target complex at low Mg2+ concentrations. We observe differences in Cas12a specificity switching between three orthologs that results in variations in the routes of phage escape from Cas12a-mediated immunity. Overall, our results reveal the importance of physiological metal ion conditions on the specificity of Cas effectors that are used in different cellular environments.
Cas12a 是 V-A 型 CRISPR-Cas 系统的免疫效应因子,已被用于基因组编辑和其他生物技术工具。Cas12a 的特异性已经在体外和基因组编辑实验中进行了广泛的研究。然而,体外研究通常在高镁离子浓度下进行,这与细胞中存在的游离 Mg2+浓度不一致。通过在一系列 Mg2+浓度下对 Cas12a 同源物的特异性进行分析,我们发现 Cas12a 根据金属离子浓度改变其特异性。降低镁离子浓度会减少种子错配引起的切割缺陷,同时增加 PAM 远端错配引起的缺陷。我们表明,Cas12a 可以在低镁离子浓度下更快地结合种子突变靶标,从而导致更快的切割。相比之下,PAM 远端错配会在低镁离子浓度下导致 Cas12a-靶复合物形成后切割出现严重缺陷。我们观察到三种同源物之间 Cas12a 特异性切换的差异,这导致了噬菌体逃避 Cas12a 介导的免疫的途径发生变化。总的来说,我们的研究结果揭示了生理金属离子条件对 Cas 效应物特异性的重要性,这些 Cas 效应物在不同的细胞环境中被使用。