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人源MAD2B在鼻咽癌细胞中的失活导致对DNA损伤剂的化学增敏作用。

Inactivation of human MAD2B in nasopharyngeal carcinoma cells leads to chemosensitization to DNA-damaging agents.

作者信息

Cheung Hiu Wing, Chun Abel C S, Wang Qi, Deng Wen, Hu Liang, Guan Xin-Yuan, Nicholls John M, Ling Ming-Tat, Chuan Wong Yong, Tsao Sai Wah, Jin Dong-Yan, Wang Xianghong

机构信息

Department of Anatomy, Faculty of Medicine, The University of Hong Kong, Hong Kong, China.

出版信息

Cancer Res. 2006 Apr 15;66(8):4357-67. doi: 10.1158/0008-5472.CAN-05-3602.

Abstract

Rev7p has been suggested to play an important role in regulating DNA damage response in yeast, and recently, the human homologue (i.e., MAD2B) has been identified, which shares significant homology to the mitotic checkpoint protein MAD2. In this study, we investigated whether MAD2B played a key role in cellular sensitivity to DNA-damaging anticancer drugs by suppressing its expression using RNA interference in nasopharyngeal carcinoma cells. Using colony formation assay, we found that suppression of MAD2B conferred hypersensitivity to a range of DNA-damaging agents, especially DNA cross-linkers, such as cisplatin, and gamma-irradiation. This effect was associated with reduced frequencies of spontaneous and drug-induced mutations, elevated phosphorylation of histone H2AX, and markedly increased chromosomal aberrations in response to DNA damage. In addition, there was also a significant decrease in cisplatin-induced sister chromatid exchange rate, a marker for homologous recombination-mediated post-replication repair in MAD2B-depleted cells. These results indicate that MAD2B may be a key factor in regulating cellular response to DNA damage in cancer cells. Our findings reveal a novel strategy for cancer therapy, in which cancer cells are sensitized to DNA-damaging anticancer drugs through inactivation of the MAD2B gene.

摘要

Rev7p被认为在调节酵母中的DNA损伤反应中起重要作用,最近,已鉴定出人类同源物(即MAD2B),它与有丝分裂检查点蛋白MAD2具有显著同源性。在本研究中,我们通过在鼻咽癌细胞中使用RNA干扰抑制其表达,研究了MAD2B是否在细胞对DNA损伤抗癌药物的敏感性中起关键作用。使用集落形成试验,我们发现抑制MAD2B会使细胞对一系列DNA损伤剂,特别是DNA交联剂(如顺铂)和γ射线照射产生超敏反应。这种效应与自发和药物诱导突变的频率降低、组蛋白H2AX磷酸化增加以及对DNA损伤的染色体畸变显著增加有关。此外,在MAD2B缺失的细胞中,顺铂诱导的姐妹染色单体交换率(同源重组介导的复制后修复的标志物)也显著降低。这些结果表明,MAD2B可能是调节癌细胞对DNA损伤反应的关键因素。我们的研究结果揭示了一种新的癌症治疗策略,即通过使MAD2B基因失活,使癌细胞对DNA损伤抗癌药物敏感。

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