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FtsK-dependent XerCD-dif recombination unlinks replication catenanes in a stepwise manner

机译:依赖FtsK的XerCD-dif重组以逐步方式解除复制链的链接

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摘要

In Escherichia coli, complete unlinking of newly replicated sister chromosomes is required to ensure their proper segregation at cell division. Whereas replication links are removed primarily by topoisomerase IV, XerC/XerD-dif site-specific recombination can mediate sister chromosome unlinking in Topoisomerase IV-deficient cells. This reaction is activated at the division septum by the DNA translocase FtsK, which coordinates the last stages of chromosome segregation with cell division. It has been proposed that, after being activated by FtsK, XerC/XerD-dif recombination removes DNA links in a stepwise manner. Here, we provide a mathematically rigorous characterization of this topological mechanism of DNA unlinking. We show that stepwise unlinking is the only possible pathway that strictly reduces the complexity of the substrates at each step. Finally, we propose a topological mechanism for this unlinking reaction.
机译:在大肠杆菌中,需要完全解除新复制的姐妹染色体的连接,以确保它们在细胞分裂时能正确分离。尽管复制链接主要是通过拓扑异构酶IV去除的,但XerC / XerD-dif位点特异性重组可以介导拓扑异构酶IV缺陷细胞中的姐妹染色体解链。 DNA转移酶FtsK在分裂间隔处激活了该反应,DNA转移酶FtsK与细胞分裂协调了染色体分离的最后阶段。已经提出,在被FtsK激活后,XerC / XerD-dif重组以逐步的方式去除DNA连接。在这里,我们提供了DNA脱链这种拓扑机制的数学严格表征。我们表明,逐步解链是严格降低每个步骤中底物复杂性的唯一可能途径。最后,我们提出了这种脱链反应的拓扑机制。

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