Dip Ramiro, Naegeli Hanspeter
Institute of Pharmacology and Toxicology, University of Zürich-Tierspital, Winterthurerstrasse 260, 8057 Zürich, Switzerland.
Biochem J. 2004 Jul 1;381(Pt 1):165-74. doi: 10.1042/BJ20031666.
DNA-PK (DNA-dependent protein kinase) is a double-strand break sensor involved in DNA repair and signal transduction. In the present study, we constructed site-directed cross-linking probes to explore the range of DNA discontinuities that are recognized by DNA-PK(CS) (DNA-PK catalytic subunit). A comparison between different substrate architectures showed that DNA-PK(CS) associates preferentially with the crossover region of synthetic Holliday junctions. This interaction with four-way junctions was preserved when biotin-streptavidin complexes were assembled at the termini to exclude the binding of Ku proteins. The association of DNA-PK(CS) with Holliday junctions was salt-labile even in the presence of Ku proteins, but this interaction could be stabilized when the DNA probes were incubated with the endogenous enzyme in nuclear extracts of human cells. Cross-linking of the endogenous enzyme in cellular extracts also demonstrated that DNA-PK(CS) binds to DNA ends and four-way junctions with similar affinities in the context of a nuclear protein environment. Kinase assays using p53 proteins as a substrate showed that, in association with four-way structures, DNA-PK(CS) adopts an active conformation different from that in the complex with linear DNA. Our results are consistent with a structure-specific, but Ku- and DNA end-independent, recruitment of DNA-PK(CS) to Holliday junction intermediates. This observation suggests an unexpected functional link between the two main pathways that are responsible for the repair of DNA double-strand breaks in mammalian cells.
DNA依赖蛋白激酶(DNA-PK)是一种参与DNA修复和信号转导的双链断裂传感器。在本研究中,我们构建了定点交联探针,以探索DNA-PK(CS)(DNA-PK催化亚基)所识别的DNA间断范围。不同底物结构之间的比较表明,DNA-PK(CS)优先与合成霍利迪连接体的交叉区域结合。当生物素-链霉亲和素复合物在末端组装以排除Ku蛋白的结合时,与四链体连接的这种相互作用得以保留。即使存在Ku蛋白,DNA-PK(CS)与霍利迪连接体的结合对盐也不稳定,但当DNA探针与人细胞核提取物中的内源性酶一起孵育时,这种相互作用可以得到稳定。细胞提取物中内源性酶的交联也表明,在核蛋白环境中,DNA-PK(CS)以相似的亲和力与DNA末端和四链体连接结合。使用p53蛋白作为底物的激酶分析表明,与四链体结构结合时,DNA-PK(CS)呈现出与线性DNA复合物中不同的活性构象。我们的结果与DNA-PK(CS)以结构特异性但不依赖Ku和DNA末端的方式募集到霍利迪连接中间体一致。这一观察结果表明,在哺乳动物细胞中负责修复DNA双链断裂的两条主要途径之间存在意想不到的功能联系。