Faculty of Biomedical Sciences, Institute for Research in Biomedicine, Università della Svizzera italiana (USI), 6500, Bellinzona, Switzerland.
Department of Biophysics & Biophysical Chemistry, Johns Hopkins University, Baltimore, MD, 21205, USA.
Nat Commun. 2024 Jul 10;15(1):5789. doi: 10.1038/s41467-024-50080-y.
The outcome of CRISPR-Cas-mediated genome modifications is dependent on DNA double-strand break (DSB) processing and repair pathway choice. Homology-directed repair (HDR) of protein-blocked DSBs requires DNA end resection that is initiated by the endonuclease activity of the MRE11 complex. Using reconstituted reactions, we show that Cas9 breaks are unexpectedly not directly resectable by the MRE11 complex. In contrast, breaks catalyzed by Cas12a are readily processed. Cas9, unlike Cas12a, bridges the broken ends, preventing DSB detection and processing by MRE11. We demonstrate that Cas9 must be dislocated after DNA cleavage to allow DNA end resection and repair. Using single molecule and bulk biochemical assays, we next find that the HLTF translocase directly removes Cas9 from broken ends, which allows DSB processing by DNA end resection or non-homologous end-joining machineries. Mechanistically, the activity of HLTF requires its HIRAN domain and the release of the 3'-end generated by the cleavage of the non-target DNA strand by the Cas9 RuvC domain. Consequently, HLTF removes the H840A but not the D10A Cas9 nickase. The removal of Cas9 H840A by HLTF explains the different cellular impact of the two Cas9 nickase variants in human cells, with potential implications for gene editing.
CRISPR-Cas 介导的基因组修饰的结果取决于 DNA 双链断裂 (DSB) 的处理和修复途径的选择。蛋白阻断的 DSB 通过 HDR 修复需要由内切酶活性的 MRE11 复合物起始的 DNA 末端切除。使用重组反应,我们表明 Cas9 断裂出乎意料地不能被 MRE11 复合物直接切除。相比之下,Cas12a 催化的断裂很容易被处理。Cas9 与 Cas12a 不同,它桥接了断裂的末端,防止 MRE11 检测和处理 DSB。我们证明 Cas9 必须在 DNA 切割后发生位移,以允许 DNA 末端切除和修复。使用单分子和批量生化测定,我们发现 HLTF 转位酶直接将 Cas9 从断裂末端移除,这允许 DNA 末端切除或非同源末端连接机制进行 DSB 处理。从机制上讲,HLTF 的活性需要其 HIRAN 结构域和由 Cas9 RuvC 结构域切割非靶 DNA 链产生的 3'-末端的释放。因此,HLTF 去除了 H840A 但没有去除 D10A Cas9 切口酶。HLTF 将 Cas9 H840A 移除,这解释了两种 Cas9 切口酶变体在人类细胞中的不同细胞影响,这可能对基因编辑具有潜在影响。