首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Role of Replication Protein A in Double Holliday Junction Dissolution Mediated by the BLM-Topo IIIα-RMI1-RMI2 Protein Complex
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Role of Replication Protein A in Double Holliday Junction Dissolution Mediated by the BLM-Topo IIIα-RMI1-RMI2 Protein Complex

机译:复制蛋白A在BLM-TopoIIIα-RMI1-RMI2蛋白复合物介导的双霍利迪结溶解中的作用

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摘要

The conserved BTR complex, composed of the Bloom's syndrome helicase (BLM), topoisomerase IIIα, RMI1, and RMI2, regulates homologous recombination in favor of non-crossover formation via the dissolution of the double Holliday Junction (dHJ). Here we show enhancement of the BTR-mediated dHJ dissolution reaction by the heterotrimeric single-stranded DNA binding protein replication protein A (RPA). Our results suggest that RPA acts by sequestering a single-stranded DNA intermediate during dHJ dissolution. We provide evidence that RPA physically interacts with RMI1. The RPA interaction domain in RMI1 has been mapped, and RMI1 mutants impaired for RPA interaction have been generated. Examination of these mutants ascertains the significance of the RMI1-RPA interaction in dHJ dissolution. Our results thus implicate RPA as a cofactor of the BTR complex in dHJ dissolution.
机译:保守的BTR复合物由Bloom's综合征解旋酶(BLM),拓扑异构酶IIIα,RMI1和RMI2组成,它通过溶解双霍利迪连接点(dHJ)来调节同源重组,从而有利于非交叉形成。在这里,我们显示了异三聚体单链DNA结合蛋白复制蛋白A(RPA)对BTR介导的dHJ溶解反应的增强。我们的结果表明,RPA通过在dHJ溶解过程中隔离单链DNA中间体而起作用。我们提供了RPA与RMI1物理交互的证据。已映射RMI1中的RPA相互作用域,并已生成RPA1相互作用受损的RMI1突变体。这些突变体的检查确定了dHJ溶解中RMI1-RPA相互作用的重要性。因此,我们的结果表明RPA是dHJ溶解中BTR复合物的辅助因子。

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