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Functional Role of BLAP75 in BLM-Topoisomerase IIIα-dependentHolliday JunctionProcessing

机译:BLAP75在依赖BLM-拓扑异构酶IIIα的功能中的作用霍利迪交界处处理中

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摘要

The BLAP75 protein combines with the BLM helicase and topoisomerase (Topo) IIIα to form an evolutionarily conserved complex, termed the BTB complex, that functions to regulate homologous recombination. BLAP75 binds DNA, associates with both BLM and Topo IIIα, and enhances the ability of the BLM-Topo IIIα pair to branch migrate the Holliday junction (HJ) or dissolve the double Holliday junction (dHJ) structure to yield non-crossover recombinants. Here we seek to understand the relevance of the biochemical attributes of BLAP75 in HJ processing. With the use of a series of BLAP75 protein fragments, we show that the evolutionarily conserved N-terminal third of BLAP75 mediates complex formation with BLM and Topo IIIα and that the DNA binding activity resides in the C-terminal third of this novel protein. Interestingly, the N-terminal third of BLAP75 is just as adept as the full-length protein in the promotion of dHJ dissolution and HJ unwinding by BLM-Topo IIIα. Thus, the BLAP75 DNA binding activity is dispensable for the ability of the BTB complex to process the HJ in vitro. Lastly, we show that a BLAP75 point mutant (K166A), defective in Topo IIIα interaction, is unable to promote dHJ dissolution and HJ unwinding by BLM-TopoIIIα. This result provides proof that the functional integrity of theBTB complex is contingent upon the interaction of BLAP75 with TopoIIIα.
机译:BLAP75蛋白与BLM解旋酶和拓扑异构酶(Topo)IIIα结合形成一种进化上保守的复合物,称为BTB复合物,其功能是调节同源重组。 BLAP75与DNA结合,与BLM和TopoIIIα缔合,并增强BLM-TopoIIIα对分支迁移霍利迪结(HJ)或溶解双霍利迪结(dHJ)结构以产生非交叉重组子的能力。在这里,我们试图了解BLAP75在HJ加工中的生化属性的相关性。通过使用一系列BLAP75蛋白片段,我们证明了BLAP75的进化保守N端三分之一介导了BLM和TopoIIIα的复合物形成,并且DNA结合活性位于该新型蛋白的C端三分之一。有趣的是,BLAP75的N末端三分之一与全长蛋白质一样,在通过BLM-TopoIIIα促进dHJ溶解和HJ退绕方面同样出色。因此,BLAP75 DNA结合活性对于BTB复合物在体外处理HJ的能力是必不可少的。最后,我们显示在TopoIIIα相互作用中有缺陷的BLAP75点突变体(K166A)无法促进BLM-Topo的dHJ溶解和HJ释放IIIα。该结果提供了证明BTB复合体取决于BLAP75与Topo的相互作用IIIα。

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