Division of Radiation Effect Research, Radiation Health Research Institute, Korea Hydro & Nuclear Power Co., Ltd., 132-703, Seoul, Korea.
J Biochem Mol Toxicol. 2012 Nov;26(11):429-38. doi: 10.1002/jbt.21438. Epub 2012 Sep 12.
H2AX plays an important role in chromatin reorganization implicated in DNA repair and apoptosis under various DNA damaging conditions. In this study, the interaction between TOPORS (topoisomerase I-binding protein) and H2AX was verified using mammalian cell extracts exposed to diverse DNA damaging stresses such as ionizing radiation, doxorubicin, camptothecin, and hydrogen peroxide. In vitro assays for ubiquitination revealed that TOPORS functions as a novel E3 ligase for H2AX ubiquitination. TOPORS was found to be dissociated from H2AX proteins when cells were exposed to oxidative stress, but not replication-inducing DNA damaging stress. The protein stability of H2AX was decreased when TOPORS was ectopically expressed in cells, and oxidative stresses such as hydrogen peroxide and ionizing radiation induced recovery of the H2AX protein level. Therefore, these biochemical data suggest that TOPORS plays a key role in the turnover of H2AX protein, discriminating the type of DNA damaging stress.
H2AX 在染色质重排中发挥重要作用,涉及在各种 DNA 损伤条件下的 DNA 修复和细胞凋亡。在这项研究中,使用暴露于各种 DNA 损伤应激(如电离辐射、阿霉素、喜树碱和过氧化氢)的哺乳动物细胞提取物验证了 TOPORS(拓扑异构酶 I 结合蛋白)与 H2AX 之间的相互作用。泛素化的体外测定表明,TOPORS 是 H2AX 泛素化的新型 E3 连接酶。当细胞暴露于氧化应激时,TOPORS 与 H2AX 蛋白解离,但不与复制诱导的 DNA 损伤应激解离。当 TOPORS 在细胞中异位表达时,H2AX 的蛋白质稳定性降低,而过氧化氢和电离辐射等氧化应激则诱导 H2AX 蛋白水平恢复。因此,这些生化数据表明 TOPORS 在 H2AX 蛋白的周转中发挥关键作用,区分 DNA 损伤应激的类型。