Li Xiuying, Nan Anuo, Xiao Ying, Chen Yongzhong, Lai Yandong
Institute for Chemical Carcinogenesis, Guangzhou Medical University, Guangzhou 510182, China; College of Pharmacy, Jinan University, Guangzhou 510632, China.
Institute for Chemical Carcinogenesis, Guangzhou Medical University, Guangzhou 510182, China.
Toxicology. 2015 May 4;331:57-65. doi: 10.1016/j.tox.2015.03.007. Epub 2015 Mar 12.
Phosphorylation of histone H2AX (γ-H2AX) in response to DNA double-strand breaks (DSBs) should be eliminated from the sites of DNA damage to fulfill the DNA repair and release cells from the growth arrest. Previous study showed that protein phosphatase 2A (PP2A) interact with γ-H2AX that lead to the dephosphorylation of γ-H2AX. Here, we examined the effects of suppression of PP2A regulatory subunits on dephosphorylation of γ-H2AX in human embryonic kidney epithelial cells (HEK) treated by topoisomerase I inhibitor camptothecin (CPT). We found that cells with suppression of B55α or B56ϵ were more sensitive to DNA damage agents. Suppression of B56ϵ led to persistence of γ-H2AX, resulting in prolonged DSBs repair and increased chromatin instability measured by comet assay. In addition, the deficiency of B56ϵ impaired the cell cycle regulation and the DNA repair pathway of homologous recombination (HR). Notably, we detected that PP2A B56ϵ subunit was involved directly in dephosphorylation of γ-H2AX and translocated from cytoplasm to nucleus upon the treatment of CPT. Our findings demonstrate that PP2A holoenzyme containing B56ϵ is responsible for the dephosphorylation of γ-H2AX and regulation of DNA repair of DSBs induced by CPT.
为完成DNA修复并使细胞从生长停滞中释放出来,响应DNA双链断裂(DSB)的组蛋白H2AX磷酸化(γ-H2AX)应从DNA损伤位点消除。先前的研究表明,蛋白磷酸酶2A(PP2A)与γ-H2AX相互作用,导致γ-H2AX去磷酸化。在此,我们检测了在拓扑异构酶I抑制剂喜树碱(CPT)处理的人胚肾上皮细胞(HEK)中,PP2A调节亚基的抑制对γ-H2AX去磷酸化的影响。我们发现,抑制B55α或B56ε的细胞对DNA损伤剂更敏感。抑制B56ε导致γ-H2AX持续存在,导致DSB修复延长,并通过彗星试验检测到染色质不稳定性增加。此外,B56ε的缺乏损害了细胞周期调控和同源重组(HR)的DNA修复途径。值得注意的是,我们检测到PP2A B56ε亚基直接参与γ-H2AX的去磷酸化,并在CPT处理后从细胞质转移到细胞核。我们的研究结果表明,含有B56ε的PP2A全酶负责γ-H2AX的去磷酸化以及CPT诱导的DSB的DNA修复调控。