Cui Fengmei, Fan Rong, Chen Qiu, He Yongming, Song Man, Shang Zengfu, Zhang Shimeng, Zhu Wei, Cao Jianping, Guan Hua, Zhou Ping-Kun
Department of Radiation Medicine, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou, 215123, China.
Mol Cell Biochem. 2015 Aug;406(1-2):43-51. doi: 10.1007/s11010-015-2422-2. Epub 2015 Jun 7.
Deregulation of c-Myc often occurs in various human cancers, which not only contributes to the genesis and progression of cancers but also affects the outcomes of cancer radio- or chemotherapy. In this study, we have investigated the function of c-Myc in the repair of DNA double-strand break (DSB) induced by γ-ray irradiation. A c-Myc-silenced Hela-630 cell line was generated from HeLa cells using RNA interference technology. The DNA DSBs were detected by γ-H2AX foci, neutral comet assay and pulsed-field gel electrophoresis. We found that the capability of DNA DSB repair in Hela-630 cells was significantly reduced, and the repair kinetics of DSB was delayed as compared to the control Hela-NC cells. Silence of c-myc sensitized the cellular sensitivity to ionizing radiation. The phosphorylated c-Myc (Thr58/pSer62) formed the consistent co-localisation foci with γ-H2AX as well as the phosphorylated DNA-PKcs/S2056 in the irradiated cells. Moreover, depression of c-Myc largely attenuated the ionizing radiation-induced phosphorylation of the ataxia telangiectasia mutated (ATM) and decreased the in vitro kinase activity of DNA-PKcs. Taken together, our results demonstrated that c-Myc protein functions in the process of DNA double-strand break repair, at least partially, through affecting the ATM phosphorylation and DNA-PKcs kinase activity. The overexpression of c-Myc in tumours can account for the radioresistance of some tumour cell types.
c-Myc的失调经常发生在各种人类癌症中,这不仅促进了癌症的发生和发展,还影响了癌症放疗或化疗的结果。在本研究中,我们研究了c-Myc在γ射线照射诱导的DNA双链断裂(DSB)修复中的功能。使用RNA干扰技术从HeLa细胞中构建了c-Myc沉默的Hela-630细胞系。通过γ-H2AX焦点、中性彗星试验和脉冲场凝胶电泳检测DNA DSB。我们发现,与对照Hela-NC细胞相比,Hela-630细胞中DNA DSB修复能力显著降低,DSB修复动力学延迟。c-myc的沉默使细胞对电离辐射的敏感性增加。磷酸化的c-Myc(Thr58/pSer62)在受照射细胞中与γ-H2AX以及磷酸化的DNA-PKcs/S2056形成一致的共定位焦点。此外,c-Myc的抑制大大减弱了电离辐射诱导的共济失调毛细血管扩张突变(ATM)的磷酸化,并降低了DNA-PKcs的体外激酶活性。综上所述,我们的结果表明,c-Myc蛋白至少部分地通过影响ATM磷酸化和DNA-PKcs激酶活性在DNA双链断裂修复过程中发挥作用。肿瘤中c-Myc的过表达可以解释某些肿瘤细胞类型的放射抗性。