Gama Vivian, Yoshida Tomoyuki, Gomez Jose A, Basile David P, Mayo Lindsey D, Haas Arthur L, Matsuyama Shigemi
Case Comprehensive Cancer Center, Department of Pharmacology and Medicine, Case Western Reserve University, Cleveland, OH 44106, USA.
Exp Cell Res. 2006 Feb 15;312(4):488-99. doi: 10.1016/j.yexcr.2005.11.016.
Ku70 plays an important role in DNA damage repair and prevention of cell death. Previously, we reported that apoptosis caused a decrease in cellular Ku70 levels. In this study, we analyzed the mechanism of how Ku70 levels decrease during drug-induced apoptosis. In HeLa cells, staurosporin (STS) caused a decrease in Ku70 levels without significantly affecting Ku70 mRNA levels. We found that Ku70 protein was highly ubiquitinated in various cell types, such as HeLa, HEK293T, Dami (a megakaryocytic cell line), endothelial, and rat kidney cells. An increase in ubiquitinated Ku70 protein was observed in apoptotic cells, and proteasome inhibitors attenuated the decrease in Ku70 levels in apoptotic cells. These results suggest that the ubiquitin-proteasome proteolytic pathway plays a role in decreasing Ku70 levels in apoptotic cells. Ku70 forms a heterodimer with Ku80, which is required for the DNA repair activity of Ku proteins. We also found that Ku80 levels decreased in apoptotic cells and that Ku80 is a target of ubiquitin. Ubiquitinated Ku70 was not found in the Ku70-Ku80 heterodimer, suggesting that modification by ubiquitin inhibits Ku heterodimer formation. We propose that the ubiquitin-dependent modification of Ku70 plays an important role in the control of cellular levels of Ku70.
Ku70在DNA损伤修复及预防细胞死亡过程中发挥着重要作用。此前,我们报道过细胞凋亡会导致细胞内Ku70水平下降。在本研究中,我们分析了药物诱导的细胞凋亡过程中Ku70水平下降的机制。在HeLa细胞中,星形孢菌素(STS)导致Ku70水平下降,但对Ku70 mRNA水平无显著影响。我们发现Ku70蛋白在多种细胞类型中高度泛素化,如HeLa细胞、HEK293T细胞、Dami细胞(一种巨核细胞系)、内皮细胞和大鼠肾细胞。在凋亡细胞中观察到泛素化的Ku70蛋白增加,蛋白酶体抑制剂可减弱凋亡细胞中Ku70水平的下降。这些结果表明泛素-蛋白酶体蛋白水解途径在凋亡细胞中降低Ku70水平方面发挥作用。Ku70与Ku80形成异源二聚体,这是Ku蛋白DNA修复活性所必需的。我们还发现凋亡细胞中Ku80水平下降,且Ku80是泛素的作用靶点。在Ku70-Ku80异源二聚体中未发现泛素化的Ku70,这表明泛素修饰会抑制Ku异源二聚体的形成。我们提出,Ku70的泛素依赖性修饰在控制细胞内Ku70水平方面起着重要作用。