Institute of Molecular Plant Sciences, The University of Edinburgh, Edinburgh, EH9 3BF, UK.
Faculty of Science, Charles University, Prague, 128 44, Czech Republic.
New Phytol. 2022 Sep;235(6):2285-2299. doi: 10.1111/nph.18212. Epub 2022 May 31.
The impact of epigenetic modifications on the efficacy of CRISPR/Cas9-mediated double-stranded DNA breaks and subsequent DNA repair is poorly understood, especially in plants. In this study, we investigated the effect of the level of cytosine methylation on the outcome of CRISPR/Cas9-induced mutations at multiple Cas9 target sites in Nicotiana benthamiana leaf cells using next-generation sequencing. We found that high levels of promoter methylation, but not gene-body methylation, decreased the frequency of Cas9-mediated mutations. DNA methylation also influenced the ratio of insertions and deletions and potentially the type of Cas9 cleavage in a target-specific manner. In addition, we detected an over-representation of deletion events governed by a single 5'-terminal nucleotide at Cas9-induced DNA breaks. Our findings suggest that DNA methylation can indirectly impair Cas9 activity and subsequent DNA repair, probably through changes in the local chromatin structure. In addition to the well described Cas9-induced blunt-end double-stranded DNA breaks, we provide evidence for Cas9-mediated staggered DNA cuts in plant cells. Both types of cut may direct microhomology-mediated DNA repair by a novel, as yet undescribed, mechanism.
表观遗传修饰对 CRISPR/Cas9 介导的双链 DNA 断裂及其后续 DNA 修复效果的影响知之甚少,特别是在植物中。在这项研究中,我们使用下一代测序技术研究了拟南芥叶片细胞中多个 Cas9 靶位点处 CRISPR/Cas9 诱导突变的胞嘧啶甲基化水平对其结果的影响。我们发现,启动子高甲基化而非基因体甲基化降低了 Cas9 介导的突变频率。DNA 甲基化还以靶标特异性的方式影响插入缺失比,并可能影响 Cas9 切割的类型。此外,我们在 Cas9 诱导的 DNA 断裂处检测到一个由单个 5'-末端核苷酸控制的、占优势的缺失事件。我们的研究结果表明,DNA 甲基化可以间接损害 Cas9 的活性及其后续的 DNA 修复,可能是通过改变局部染色质结构。除了描述明确的 Cas9 诱导的平末端双链 DNA 断裂外,我们还为植物细胞中 Cas9 介导的交错 DNA 切割提供了证据。这两种类型的切割都可能通过一种新的、尚未描述的机制,引导微同源介导的 DNA 修复。