首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Topoisomerase IIIα and Bloom's helicase can resolve a mobile double Holliday junction substrate through convergent branch migration
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Topoisomerase IIIα and Bloom's helicase can resolve a mobile double Holliday junction substrate through convergent branch migration

机译:TopoisomeraseIIIα和Bloom的解旋酶可以通过收敛的分支迁移来解决可移动的双霍利迪连接底物

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It has long been suspected that a double Holliday junction (dHJ) could be resolved by a topoisomerase partnered with a helicase by convergent branch migration of the HJs. Genetic analysis of yeast TOP3 and SGS1 has lent considerable evidence to the notion that the protein products of these genes are involved in just such a process, although biochemical analysis of the metabolism of a dHJ has been hindered by the lack of a substrate that adequately replicates the endogenous structure. We have synthesized a dHJ substrate that recapitulates many of the features of an endogenous dHJ and represents a much earlier intermediate in the resolution pathway. Here, we show that Drosophila topoisomerase IIIα (Topo IIIα) and Blm (a homolog of Sgs1) are capable of resolving this substrate to non-cross-over products and that this activity is stimulated by replication protein A (RPA). We investigated the ability of other Drosophila topoisomerases to perform this reaction in concert with Blm and RPA and discovered that this resolution activity is unique to Topo IIIα. Examination of the mechanism of resolution reveals that Topo IIIα, Blm, and RPA resolve this substrate by convergent migration of the two HJs toward each other, collapsing the dHJ. This mechanism stands in contrast to classic resolvase activities that use a structure-specific endonuclease to cleave the HJs.
机译:长期以来,人们一直怀疑,可以通过拓扑异构酶与解旋酶一起通过HJ的收敛分支迁移来解决双霍利迪连接(dHJ)。酵母TOP3和SGS1的遗传分析为这种基因参与了这些基因的蛋白质产物提供了可观的证据,尽管缺乏适当复制的底物阻碍了dHJ代谢的生化分析。内生结构。我们已经合成了dHJ底物,该底物概括了内源性dHJ的许多特征,并代表了拆分途径中更早的中间体。在这里,我们显示果蝇拓扑异构酶IIIα(TopoIIIα)和Blm(Sgs1的同系物)能够将这种底物解析为非交叉产物,并且该活性受到复制蛋白A(RPA)的刺激。我们研究了其他果蝇拓扑异构酶与Blm和RPA协同进行此反应的能力,并发现该拆分活性是TopoIIIα独有的。对分离机理的研究表明,TopoIIIα,Blm和RPA通过使两个HJ相互趋近会聚,使dHJ塌陷而分解了该底物。该机制与使用结构特异性核酸内切酶切割HJ的经典分辨酶活性相反。

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