College of Veterinary Medicine, Michigan State University, East Lansing, MI 48824, USA.
Department of Microbiology & Molecular Genetics, Michigan State University, East Lansing, MI 48824, USA.
Nucleic Acids Res. 2022 Oct 28;50(19):11058-11071. doi: 10.1093/nar/gkac913.
DNA double strand breaks (DSBs) are induced by external genotoxic agents (ionizing radiation or genotoxins) or by internal processes (recombination intermediates in lymphocytes or by replication errors). The DNA ends induced by these genotoxic processes are often not ligatable, requiring potentially mutagenic end-processing to render ends compatible for ligation by non-homologous end-joining (NHEJ). Using single molecule approaches, Loparo et al. propose that NHEJ fidelity can be maintained by restricting end-processing to a ligation competent short-range NHEJ complex that 'maximizes the fidelity of DNA repair'. These in vitro studies show that although this short-range NHEJ complex requires DNA ligase IV (Lig4), its catalytic activity is dispensable. Here using cellular models, we show that inactive Lig4 robustly promotes DNA repair in living cells. Compared to repair products from wild-type cells, those isolated from cells with inactive Lig4 show a somewhat increased fraction that utilize micro-homology (MH) at the joining site consistent with alternative end-joining (a-EJ). But unlike a-EJ in the absence of NHEJ, a large percentage of joints isolated from cells with inactive Lig4 occur with no MH - thus, clearly distinct from a-EJ. Finally, biochemical assays demonstrate that the inactive Lig4 complex promotes the activity of DNA ligase III (Lig3).
DNA 双链断裂 (DSBs) 是由外部遗传毒性剂(电离辐射或遗传毒素)或内部过程(淋巴细胞中的重组中间体或复制错误)引起的。这些遗传毒性过程诱导的 DNA 末端通常不可连接,需要潜在的诱变末端处理以使末端与非同源末端连接 (NHEJ) 相容。Loparo 等人使用单分子方法提出,通过将末端处理限制在能够连接的短程 NHEJ 复合物中,可以维持 NHEJ 的保真度,该复合物“最大限度地提高 DNA 修复的保真度”。这些体外研究表明,尽管这种短程 NHEJ 复合物需要 DNA 连接酶 IV (Lig4),但其催化活性是可有可无的。在这里,我们使用细胞模型表明,失活的 Lig4 可在活细胞中强力促进 DNA 修复。与野生型细胞的修复产物相比,从失活 Lig4 的细胞中分离出的产物显示出稍微增加的利用连接位点微同源性 (MH) 的部分,与替代末端连接 (a-EJ) 一致。但与没有 NHEJ 的 a-EJ 不同,从失活 Lig4 的细胞中分离出的大部分接头没有 MH-因此,与 a-EJ 明显不同。最后,生化分析表明,失活的 Lig4 复合物可促进 DNA 连接酶 III (Lig3) 的活性。