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[DNA依赖性蛋白激酶:一种参与细胞对电离辐射反应的主要蛋白质]

[DNA-dependent protein kinase: a major protein involved in the cellular response to ionizing radiation].

作者信息

Muller C, Rodrigo G, Calsou P, Salles B

机构信息

Institut de pharmacologie et de biologie structurale CNRS, UPR 9062, Toulouse.

出版信息

Bull Cancer. 1999 Dec;86(12):977-83.

Abstract

DNA-dependent protein kinase (DNA-PK) is a DNA-activated nuclear serine/threonine protein kinase. DNA-PK consists of a regulatory sub-unit, the heterodimeric Ku protein (composed of a 70- and a 86-kDa subunit) which binds DNA ends and targets the catalytic sub-unit, DNA-PKcs to DNA strand breaks. DNA-PK plays a major role in the repair of double-strand breaks induced in DNA after exposure to ionizing radiation as shown by the extreme radiosensitivity of cells with mutations in Ku86, Ku70 or DNA-PKcs genes. Cells deficient in DNA-PK activity also exhibit hypersensitivity to genotoxic drugs such as cisplatin and nitrogen mustards. In the first part of this review, the current knowledge on the biochemical characteristics of DNA-PK, its mechanism of action in DNA repair and the phenotype of DNA-PK deficient cells is summarized. These results suggest that DNA-PK might play a role in the acquisition of a resistant phenotype of human tumors to radiotherapy, chemotherapy using genotoxic drugs or to both treatments. In the second part of this review, the studies devoted to inhibition of DNA-PK in order to enhance cancer therapy by DNA-damaging agents are presented.

摘要

DNA依赖性蛋白激酶(DNA-PK)是一种由DNA激活的核丝氨酸/苏氨酸蛋白激酶。DNA-PK由一个调节亚基,即异二聚体Ku蛋白(由一个70 kDa和一个86 kDa的亚基组成)构成,该蛋白可结合DNA末端并将催化亚基DNA-PKcs靶向至DNA链断裂处。如Ku86、Ku70或DNA-PKcs基因突变的细胞表现出极高的放射敏感性所示,DNA-PK在DNA暴露于电离辐射后诱导产生的双链断裂修复中起主要作用。缺乏DNA-PK活性的细胞对顺铂和氮芥等基因毒性药物也表现出超敏性。在本综述的第一部分,总结了目前关于DNA-PK生化特性、其在DNA修复中的作用机制以及DNA-PK缺陷细胞表型的知识。这些结果表明,DNA-PK可能在人类肿瘤获得对放疗、使用基因毒性药物的化疗或两种治疗的抗性表型中发挥作用。在本综述的第二部分,介绍了致力于抑制DNA-PK以通过DNA损伤剂增强癌症治疗效果的研究。

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