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首页> 外文期刊>The Journal of biological chemistry >Synergic and Opposing Activities of Thermophilic RecQ-like Helicase and Topoisomerase 3 Proteins in Holliday Junction Processing and Replication Fork Stabilization
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Synergic and Opposing Activities of Thermophilic RecQ-like Helicase and Topoisomerase 3 Proteins in Holliday Junction Processing and Replication Fork Stabilization

机译:Holliday结合加工中的嗜热型RECQ样氦样酶和拓扑异构酶3蛋白的协同和相反的活性和复制叉稳定

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RecQ family helicases and topoisomerase 3 enzymes form evolutionary conserved complexes that play essential functions in DNA replication, recombination, and repair, and in vitro, show coordinate activities on model recombination and replication intermediates. Malfunctioning of these complexes in humans is associated with genomic instability and cancer-prone syndromes. Although both RecQ-like and topoisomerase 3 enzymes are present in archaea, only a few of them have been studied, and no information about their functional interaction is available. We tested the combined activities of the RecQ-like helicase, Hel112, and the topoisomerase 3, SsTop3, from the thermophilic archaeon Sulfolobus solfataricus. Hel112 showed coordinate DNA unwinding and annealing activities, a feature shared by eukaryotic RecQ homologs, which resulted in processing of synthetic Holliday junctions and stabilization of model replication forks. SsTop3 catalyzed DNA relaxation and annealing. When assayed in combination, SsTop3 inhibited the Hel112 helicase activity on Holliday junctions and stimulated formation and stabilization of such structures. In contrast, Hel112 did not affect the SsTop3 DNA relaxation activity. RecQ-topoisomerase 3 complexes show structural similarity with the thermophile-specific enzyme reverse gyrase, which catalyzes positive supercoiling of DNA and was suggested to play a role in genome stability at high temperature. Despite such similarity and the high temperature of reaction, the SsTop3-Hel112 complex does not induce positive supercoiling and is thus likely to play different roles. We propose that the interplay between Hel112 and SsTop3 might regulate the equilibrium between recombination and anti-recombination activities at replication forks.
机译:RECQ家族螺旋酶和Topoisomerase 3酶形成进化保守的复合物,其在DNA复制,重组和修复和体外起到基本功能的基本功能,表明模型重组和复制中间体的坐标活动。人类中这些复合物的故障与基因组不稳定性和癌症 - 易患综合征有关。虽然在古典中存在RECQ样和拓扑异构酶3酶,但是已经研究了其中一些,并且没有有关其功能交互的信息。我们测试了来自嗜热archaeon sulfolobus solfataricus的recq样氦酶,hel112和拓扑异构酶3,sstop3的组合活动。 HEL112显示坐标DNA展开和退火活动,一种由真核议程同源物共享的特征,导致加工合成的Holliday结和模型复制叉的稳定性。 SSTOP3催化DNA松弛和退火。当组合测定时,SSTOP3抑制Hel112螺旋酶活性对Holliday结合并刺激了这种结构的形成和稳定化。相比之下,Hel112不影响SSTOP3 DNA松弛活性。 RECQ-拓扑异构酶3络合物显示出与嗜热特异性酶反转乙酶的结构相似性,其催化DNA的正超镀层,并建议在高温下在基因组稳定性中起作用。尽管存在这种相似性和反应的高温,但SSTOP3-HEL112复合物不会诱导正超录,因此可能发挥不同的作用。我们建议Hel112和SSTOP3之间的相互作用可以调节复制叉的重组和抗重组活性之间的平衡。

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