有丝分裂
染色质
细胞生物学
磷酸化
DNA
有丝分裂出口
蛋白磷酸酶2
化学
生物
DNA损伤
DNA修复
染色体分离
微核试验
核分裂突变
细胞周期
抑制器
DNA结合蛋白
作者
Xipeng Zhao,Bin Chen,Feng Xu,Jie Zhang,Zhicheng Yao,Ruru Wang,Jie Zhang,Shenglan Zhou,Yao Hou,Shangkun Xu,An Xu,Lijun Wu,Guoping Zhao
标识
DOI:10.1073/pnas.2600248123
摘要
DNA double-strand breaks (DSBs) that occur during mitosis are primarily repaired by Polθ-mediated microhomology-mediated end joining (MMEJ). The CIP2A-TOPBP1 complex has been shown to tether broken chromatin at mitotic DSBs, but whether it coordinates with or functions independently of Polθ remains unknown. Here, we show that the CIP2A-TOPBP1 complex is recruited to mitotic DSB sites, where it directly interacts with Polθ and corecruits Polθ to chromatin. CIP2A sustains Polθ phosphorylation by inhibiting PP2A, thereby prolonging Polθ chromatin retention and enabling efficient repair. Upon repair completion, the CIP2A-TOPBP1 complex dissociates, PP2A dephosphorylates Polθ, and Polθ is released from chromatin. Loss of CIP2A impairs tumor growth, while disruption of CIP2A-Polθ binding leads to persistent DNA damage, micronucleus formation, and synthetic lethality in BRCA1/2-deficient cells. These findings uncover a cooperative mechanism by which CIP2A-TOPBP1 dynamically regulates Polθ in mitotic DSB repair and provide insights into the synthetic lethal interaction of CIP2A with BRCA1/2 under radiotherapy.
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