Iwasaki H, Takahagi M, Nakata A, Shinagawa H
Department of Experimental Chemotherapy, Osaka University, Japan.
Genes Dev. 1992 Nov;6(11):2214-20. doi: 10.1101/gad.6.11.2214.
The Escherichia coli ruvA and ruvB genes are involved in DNA repair and in the late step of homologous genetic recombination. We have demonstrated previously that the RuvA-RuvB protein complex in the presence of ATP promotes reabsorption of cruciform structures extruded from a supercoiled plasmid with an inverted repeat sequence. Because the cruciform structure is topologically analogous to the Holiday structure, we have proposed that the role of the RuvA and RuvB proteins in recombination is to promote a strand exchange reaction at the Holliday junction. Here, we studied the specific interaction of the RuvA-RuvB complex with the Holliday structure using synthetic analogs prepared by annealing four oligonucleotides. The affinities of the RuvA protein for synthetic Holliday junctions are much higher (> 20-fold) than for duplex DNA, and the affinities of the RuvA protein for the junctions are further enhanced (> 4-fold) by the interaction with the RuvB protein. The RuvA-RuvB protein complex in the presence of ATP promotes dissociation of the synthetic Holliday junction with homology in the central core into two halves by catalyzing branch migration to the DNA ends, but it does not affect the structure of the synthetic Holliday junction without the homology. The separation of the synthetic Holliday junction is a result of the activity of the RuvA-RuvB complex that promotes strand exchange and DNA unwinding. Furthermore, RuvA and RuvB promote the strand exchange reaction at the Holliday junctions made by RecA. These results provide further evidence that the RuvA-RuvB complex recognizes the Holliday junction and promotes branch migration in homologous recombination.
大肠杆菌的ruvA和ruvB基因参与DNA修复以及同源基因重组的后期步骤。我们之前已经证明,在ATP存在的情况下,RuvA-RuvB蛋白复合物可促进从具有反向重复序列的超螺旋质粒中挤出的十字形结构的重新吸收。由于十字形结构在拓扑结构上类似于霍利迪结构,我们提出RuvA和RuvB蛋白在重组中的作用是促进霍利迪连接点处的链交换反应。在这里,我们使用通过退火四个寡核苷酸制备的合成类似物研究了RuvA-RuvB复合物与霍利迪结构的特异性相互作用。RuvA蛋白对合成霍利迪连接点的亲和力比对双链DNA的亲和力高得多(>20倍),并且通过与RuvB蛋白的相互作用,RuvA蛋白对连接点的亲和力进一步增强(>4倍)。在ATP存在的情况下,RuvA-RuvB蛋白复合物通过催化分支迁移至DNA末端,促进中央核心具有同源性的合成霍利迪连接点解离成两半,但它不影响没有同源性的合成霍利迪连接点的结构。合成霍利迪连接点的分离是RuvA-RuvB复合物促进链交换和DNA解旋活性的结果。此外,RuvA和RuvB促进RecA形成的霍利迪连接点处的链交换反应。这些结果提供了进一步的证据,证明RuvA-RuvB复合物识别霍利迪连接点并促进同源重组中的分支迁移。