Synthetic Biology, Institut Pasteur, Université Paris Cité, CNRS UMR 6047, 75015 Paris, France.
Collège Doctoral, Sorbonne Université, F-75005 Paris, France.
Nucleic Acids Res. 2023 Apr 24;51(7):3485-3496. doi: 10.1093/nar/gkad170.
Genetic tools derived from the Cas9 RNA-guided nuclease are providing essential capabilities to study and engineer bacteria. While the importance of off-target effects was noted early in Cas9's application to mammalian cells, off-target cleavage by Cas9 in bacterial genomes is easily avoided due to their smaller size. Despite this, several studies have reported experimental setups in which Cas9 expression was toxic, even when using the catalytic dead variant of Cas9 (dCas9). Specifically, dCas9 was shown to be toxic when in complex with guide RNAs sharing specific PAM (protospacer adjacent motif)-proximal sequence motifs. Here, we demonstrate that this toxicity is caused by off-target binding of Cas9 to the promoter of essential genes, with silencing of off-target genes occurring with as little as 4 nt of identity in the PAM-proximal sequence. Screens performed in various strains of Escherichia coli and other enterobacteria show that the nature of toxic guide RNAs changes together with the evolution of sequences at off-target positions. These results highlight the potential for Cas9 to bind to hundreds of off-target positions in bacterial genomes, leading to undesired effects. This phenomenon must be considered in the design and interpretation of CRISPR-Cas experiments in bacteria.
来自 Cas9 RNA 指导的核酸酶的遗传工具为研究和工程细菌提供了必要的能力。虽然 Cas9 应用于哺乳动物细胞时早期就注意到了脱靶效应的重要性,但由于细菌基因组较小,Cas9 在细菌基因组中的脱靶切割很容易避免。尽管如此,已有几项研究报告了 Cas9 表达有毒性的实验方案,即使使用 Cas9 的催化失活变体(dCas9)也是如此。具体来说,当 dCas9 与具有特定 PAM(间隔区相邻基序)近端序列基序的向导 RNA 复合时,dCas9 被证明是有毒的。在这里,我们证明这种毒性是由 Cas9 与必需基因启动子的脱靶结合引起的,靶基因的沉默只需在 PAM 近端序列中具有 4 个核苷酸的同一性即可发生。在各种大肠杆菌菌株和其他肠杆菌中进行的筛选表明,毒性向导 RNA 的性质与靶位位置序列的进化一起发生变化。这些结果突出了 Cas9 有可能与细菌基因组中的数百个脱靶位置结合,从而导致不良影响。在细菌中设计和解释 CRISPR-Cas 实验时必须考虑到这种现象。