Koike Manabu, Koike Aki
Radiation Hazards Research Group, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.
Exp Cell Res. 2005 May 1;305(2):266-76. doi: 10.1016/j.yexcr.2004.12.027.
Ku plays a key role in multiple nuclear processes, e.g., DNA repair, transcription regulation, and replication. It is believed that heterodimerization between Ku70 and Ku80 is essential for Ku-dependent DNA repair, although its role is poorly understood. We previously identified the Ku70-binding site of Ku80. In this study, to understand the role of heterodimerization in the function of Ku, we generated and/or analyzed cell lines stably expressing the EGFP-tagged-wild-type human Ku80, its Ku70-binding mutant, its NLS-dysfunctional mutant, or its double mutant in Ku80-deficient cells. Our results show that the Ku70-binding site of Ku80 is required for the stabilization of Ku70 in the cytoplasm and for the nuclear translocation of Ku80 through its heterodimerization with Ku70. In addition, our results suggest that the nuclear translocation of Ku80 through the Ku70-binding site as well as through the NLS of Ku80 play, at least in part, a role in Ku80-dependent DNA repair. Furthermore, our results suggest the possibility that Ku80 has a DNA DSB repair function independent of Ku70 in the nuclei, in addition to that dependent on Ku70.
Ku在多个核过程中发挥关键作用,例如DNA修复、转录调控和复制。尽管其作用尚不清楚,但人们认为Ku70和Ku80之间的异二聚化对于依赖Ku的DNA修复至关重要。我们之前鉴定了Ku80的Ku70结合位点。在本研究中,为了了解异二聚化在Ku功能中的作用,我们在Ku80缺陷细胞中生成和/或分析了稳定表达EGFP标记的野生型人Ku80、其Ku70结合突变体、其核定位信号功能失调突变体或其双突变体的细胞系。我们的结果表明,Ku80的Ku70结合位点对于Ku70在细胞质中的稳定以及Ku80通过与Ku70异二聚化进行核转位是必需的。此外,我们的结果表明,Ku80通过Ku70结合位点以及通过Ku80的核定位信号进行核转位至少在一定程度上参与了依赖Ku80的DNA修复。此外,我们的结果表明,除了依赖Ku70的功能外,Ku80在细胞核中可能具有独立于Ku70的DNA双链断裂修复功能。