Department of Physiological Chemistry, University Medical Centre Utrecht, Utrecht, The Netherlands.
FASEB J. 2010 Nov;24(11):4271-80. doi: 10.1096/fj.10-158717. Epub 2010 Jun 22.
In this study, we searched for proteins regulating the tumor suppressor and life-span regulator FOXO4. Through an unbiased tandem-affinity purification strategy combined with mass spectrometry, we identified the heterodimer Ku70/Ku80 (Ku), a DNA double-strand break repair component. Using biochemical interaction studies, we found Ku70 to be necessary and sufficient for the interaction. FOXO4 mediates its tumor-suppressive function in part through transcriptional regulation of the cell cycle arrest p27(kip1) gene. Immunoblotting, luciferase reporter assays, and flow cytometry showed that Ku70 inhibited FOXO4-mediated p27(kip1) transcription and cell cycle arrest induction by >40%. In contrast, Ku70 RNAi but not control RNAi significantly increased p27(kip1) transcription. In addition, in contrast to wild-type mouse embryonic stem (ES) cells, Ku70(-/-) ES cells showed significantly increased FOXO activity, which was rescued by Ku70 reexpression. Immunofluorescence studies demonstrated that Ku70 sequestered FOXO4 in the nucleus. Interestingly, the Ku70-FOXO4 interaction stoichiometry followed a nonlinear dose-response curve by hydrogen peroxide-generated oxidative stress. Low levels of oxidative stress increased interaction stoichiometry up to 75%, peaking at 50 μM, after which dissociation occurred. Because the Ku70 ortholog in the roundworm Caenorhabditis elegans was shown to regulate life span involving C. elegans FOXO, our findings suggest a conserved critical Ku70 role for FOXO function toward coordination of a survival program, regulated by the magnitude of oxidative damage.
在这项研究中,我们寻找调节肿瘤抑制因子和寿命调节因子 FOXO4 的蛋白质。通过结合使用串联亲和纯化策略和质谱技术,我们鉴定了异二聚体 Ku70/Ku80(Ku),这是一种 DNA 双链断裂修复成分。通过生化相互作用研究,我们发现 Ku70 对于相互作用是必要和充分的。FOXO4 通过转录调节细胞周期阻滞 p27(kip1) 基因来发挥其肿瘤抑制功能的一部分。免疫印迹、荧光素酶报告基因分析和流式细胞术显示,Ku70 抑制 FOXO4 介导的 p27(kip1) 转录和细胞周期阻滞诱导超过 40%。相比之下,Ku70 RNAi 而非对照 RNAi 显著增加了 p27(kip1) 转录。此外,与野生型小鼠胚胎干细胞 (ES) 细胞相反,Ku70(-/-) ES 细胞表现出显著增加的 FOXO 活性,这可以通过 Ku70 的重新表达来挽救。免疫荧光研究表明,Ku70 将 FOXO4 隔离在核内。有趣的是,Ku70-FOXO4 相互作用的化学计量比遵循非线性剂量反应曲线,由过氧化氢产生的氧化应激引起。低水平的氧化应激增加相互作用化学计量比高达 75%,在达到 50 μM 时达到峰值,之后发生解离。由于在秀丽隐杆线虫中发现 Ku70 同源物调节涉及秀丽隐杆线虫 FOXO 的寿命,我们的发现表明 Ku70 在协调由氧化损伤程度调节的生存程序方面对 FOXO 功能具有保守的关键作用。