DNA Repair Gene Res., National Institute of Radiological Sciences, Inage-ku, Chiba, Japan.
Biochem Biophys Res Commun. 2013 May 31;435(2):260-6. doi: 10.1016/j.bbrc.2013.04.067. Epub 2013 Apr 30.
Rad52 plays essential roles in homologous recombination (HR) and repair of DNA double-strand breaks (DSBs) in Saccharomyces cerevisiae. However, in vertebrates, knockouts of the Rad52 gene show no hypersensitivity to agents that induce DSBs. Rad52 localizes in the nucleus and forms foci at a late stage following irradiation. Ku70 and Ku80, which play an essential role in nonhomologous DNA-end-joining (NHEJ), are essential for the accumulation of other core NHEJ factors, e.g., XRCC4, and a HR-related factor, e.g., BRCA1. Here, we show that the subcellular localization of EYFP-Rad52(1-418) changes dynamically during the cell cycle. In addition, EYFP-Rad52(1-418) accumulates rapidly at microirradiated sites and colocalizes with the DSB sensor protein Ku80. Moreover, the accumulation of EYFP-Rad52(1-418) at DSB sites is independent of the core NHEJ factors, i.e., Ku80 and XRCC4. Furthermore, we observed that EYFP-Rad52(1-418) localizes in nucleoli in CHO-K1 cells and XRCC4-deficient cells, but not in Ku80-deficient cells. We also found that Rad52 nuclear localization, nucleolar localization, and accumulation at DSB sites are dependent on eight amino acids (411-418) at the end of the C-terminal region of Rad52 (Rad52 CTR). Furthermore, basic amino acids on Rad52 CTR are highly conserved among mammalian, avian, and fish homologues, suggesting that Rad52 CTR is important for the regulation and function of Rad52 in vertebrates. These findings also suggest that the mechanism underlying the regulation of subcellular localization of Rad52 is important for the physiological function of Rad52 not only at a late stage following irradiation, but also at an early stage.
Rad52 在酿酒酵母的同源重组 (HR) 和 DNA 双链断裂 (DSB) 的修复中发挥着重要作用。然而,在脊椎动物中,Rad52 基因的敲除对诱导 DSB 的试剂没有表现出超敏感性。Rad52 定位于细胞核中,并在照射后晚期形成焦点。Ku70 和 Ku80 在非同源 DNA 末端连接 (NHEJ) 中发挥着重要作用,对于其他核心 NHEJ 因子的积累是必不可少的,例如 XRCC4,以及与 HR 相关的因子,例如 BRCA1。在这里,我们表明 EYFP-Rad52(1-418) 的亚细胞定位在细胞周期中动态变化。此外,EYFP-Rad52(1-418) 在微照射部位迅速积累,并与 DSB 传感器蛋白 Ku80 共定位。此外,EYFP-Rad52(1-418) 在 DSB 部位的积累不依赖于核心 NHEJ 因子,即 Ku80 和 XRCC4。此外,我们观察到 EYFP-Rad52(1-418) 在 CHO-K1 细胞和 XRCC4 缺陷型细胞中定位于核仁,但在 Ku80 缺陷型细胞中不定位于核仁。我们还发现 Rad52 的核定位、核仁定位和在 DSB 部位的积累依赖于 Rad52 C 端末端的八个氨基酸 (411-418) (Rad52 CTR)。此外,Rad52 CTR 上的碱性氨基酸在哺乳动物、禽类和鱼类同源物中高度保守,表明 Rad52 CTR 对于 Rad52 在脊椎动物中的调节和功能很重要。这些发现还表明,Rad52 亚细胞定位调节的机制对于 Rad52 的生理功能不仅在照射后晚期很重要,而且在早期也很重要。