Makins Kaela, Cisneros-Aguirre Metztli, Lopezcolorado Felicia Wednesday, Stark Jeremy M
Department of Cancer Genetics and Epigenetics.
Irell and Manella Graduate School of Biological Sciences, Beckman Research Institute of the City of Hope, 1500 E Duarte Rd., Duarte, CA 91010 USA.
bioRxiv. 2025 May 11:2025.05.08.652920. doi: 10.1101/2025.05.08.652920.
DNA double strand breaks (DSBs) are the effective lesion of cancer radiotherapy and induce gene editing. 53BP1 accumulates at DSBs and is implicated in end joining (EJ) repair, but its influence on DSB repair is distinct from canonical non-homologous end joining (C-NHEJ). We sought to define the genetic interplay of 53BP1 with C-NHEJ, focusing on the DNA-PKcs kinase. We examined Cas9 DSBs, which largely generates blunt DSBs, since blunt DSB EJ is dependent on C-NHEJ. Loss of 53BP1 does not affect blunt DSB EJ, but causes a reduction in such repair in DNA-PKcs deficient cells. In contrast, disrupting 53BP1 and DNA-PKcs, both alone and together, has similar effects on the type of deletion mutation (increase in microhomology deletions). We found similar effects on EJ with RIF1 loss, which is a downstream effector of 53BP1. Thus, 53BP1/RIF1 appear to play a backup role for DNA-PKcs during blunt DSB EJ, but function in the same pathway to suppress microhomology deletions. In contrast, 53BP1 and DNA-PKcs function independently to suppress homology-directed repair. Finally, DNA-PKcs kinase inhibition causes marked radiosensitivity, which is not additive with loss of 53BP1 and RIF1. Altogether, 53BP1/RIF1 and DNA-PKcs show distinct genetic interactions with diverse DSB repair outcomes.
DNA双链断裂(DSBs)是癌症放射治疗的有效损伤并诱导基因编辑。53BP1在DSBs处积累并参与末端连接(EJ)修复,但其对DSB修复的影响不同于经典的非同源末端连接(C-NHEJ)。我们试图确定53BP1与C-NHEJ的遗传相互作用,重点关注DNA-PKcs激酶。我们检测了Cas9 DSBs,其主要产生平端DSBs,因为平端DSB EJ依赖于C-NHEJ。53BP1的缺失不影响平端DSB EJ,但会导致DNA-PKcs缺陷细胞中此类修复的减少。相反,单独或共同破坏53BP1和DNA-PKcs对缺失突变类型(微同源性缺失增加)具有相似的影响。我们发现RIF1缺失对EJ有类似影响,RIF1是53BP1的下游效应物。因此,在平端DSB EJ过程中,53BP1/RIF1似乎对DNA-PKcs起到备份作用,但在抑制微同源性缺失的同一途径中发挥作用。相比之下,53BP1和DNA-PKcs在抑制同源性定向修复方面独立发挥作用。最后,DNA-PKcs激酶抑制导致显著的放射敏感性,这与53BP1和RIF1的缺失不存在累加效应。总之,53BP1/RIF1和DNA-PKcs在不同的DSB修复结果中表现出不同的遗传相互作用。