Radiation Biology and DNA Repair, Technical University of Darmstadt, 64287 Darmstadt, Germany.
Br J Radiol. 2020 Nov 1;93(1115):20191054. doi: 10.1259/bjr.20191054. Epub 2020 Feb 28.
Double-strand breaks (DSBs) represent the most severe type of DNA damage since they can lead to genomic rearrangements, events that can initiate and promote tumorigenic processes. DSBs arise from various exogenous agents that induce two single-strand breaks at opposite locations in the DNA double helix. Such two-ended DSBs are repaired in mammalian cells by one of two conceptually different processes, non-homologous end-joining (NHEJ) and homologous recombination (HR). NHEJ has the potential to form rearrangements while HR is believed to be error-free since it uses a homologous template for repair. DSBs can also arise from single-stranded DNA lesions if they lead to replication fork collapse. Such DSBs, however, have only one end and are repaired by HR and not by NHEJ. In fact, the majority of spontaneously arising DSBs are one-ended and HR has likely evolved to repair one-ended DSBs. HR of such DSBs demands the engagement of a second break end that is generated by an approaching replication fork. This HR process can cause rearrangements if a homologous template other than the sister chromatid is used. Thus, both NHEJ and HR have the potential to form rearrangements and the proper choice between them is governed by various factors, including cell cycle phase and genomic location of the lesion. We propose that the specific requirements for repairing one-ended DSBs have shaped HR in a way which makes NHEJ the better choice for the repair of some but not all two-ended DSBs.
双链断裂 (DSB) 代表了最严重的 DNA 损伤类型,因为它们会导致基因组重排,而这些事件可能会引发和促进肿瘤发生过程。DSB 是由各种外源因素引起的,这些因素会在 DNA 双螺旋的相反位置诱导两个单链断裂。哺乳动物细胞中,这种双端 DSB 通过两种概念上不同的过程之一进行修复,即非同源末端连接 (NHEJ) 和同源重组 (HR)。NHEJ 有可能形成重排,而 HR 被认为是无错误的,因为它使用同源模板进行修复。如果单链 DNA 损伤导致复制叉崩溃,也会产生 DSB。然而,这种 DSB 只有一个末端,由 HR 而不是 NHEJ 修复。事实上,大多数自发产生的 DSB 都是单端的,HR 很可能是为了修复单端 DSB 而进化而来的。这种 DSB 的 HR 需要第二个断裂末端的参与,这个末端是由接近的复制叉产生的。如果使用除姐妹染色单体之外的同源模板,这个 HR 过程会导致重排。因此,NHEJ 和 HR 都有可能形成重排,它们之间的正确选择取决于多种因素,包括细胞周期阶段和损伤的基因组位置。我们提出,修复单端 DSB 的特定要求以一种使 NHEJ 成为某些但不是所有双端 DSB 修复的更好选择的方式塑造了 HR。