生物
雷达51
细胞生物学
DNA修复
综合征如奈梅亨破损综合症
DNA损伤
DNA
基因组不稳定性
DNA聚合酶
聚合酶
同源重组
分子生物学
冈崎碎片
RAD52
遗传学
共济失调毛细血管扩张
真核细胞DNA复制
作者
Anjali Mann,Miguel Angel Ramírez-Otero,De Antoni A,Yodhara Wijesekara Hanthi,Vincenzo Sannino,Giorgio Baldi,Lucia Falbo,Anna Schrempf,Sara Bernardo,Joanna I. Loizou,Vincenzo Costanzo
出处
期刊:Molecular Cell
[Elsevier BV]
日期:2022-11-01
卷期号:82 (22): 4218-4231.e8
被引量:31
标识
DOI:10.1016/j.molcel.2022.09.013
摘要
POLθ promotes repair of DNA double-strand breaks (DSBs) resulting from collapsed forks in homologous recombination (HR) defective tumors. Inactivation of POLθ results in synthetic lethality with the loss of HR genes BRCA1/2, which induces under-replicated DNA accumulation. However, it is unclear whether POLθ-dependent DNA replication prevents HR-deficiency-associated lethality. Here, we isolated Xenopus laevis POLθ and showed that it processes stalled Okazaki fragments, directly visualized by electron microscopy, thereby suppressing ssDNA gaps accumulating on lagging strands in the absence of RAD51 and preventing fork reversal. Inhibition of POLθ DNA polymerase activity leaves fork gaps unprotected, enabling their cleavage by the MRE11-NBS1-CtIP endonuclease, which produces broken forks with asymmetric single-ended DSBs, hampering BRCA2-defective cell survival. These results reveal a POLθ-dependent genome protection function preventing stalled forks rupture and highlight possible resistance mechanisms to POLθ inhibitors.
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