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Single-molecule analysis uncovers the difference between the kinetics of DNA decatenation by bacterial topoisomerases I and III

机译:单分子分析揭示了细菌拓扑异构酶I和III进行DNA脱氢动力学的差异

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摘要

Escherichia coli topoisomerases I and III can decatenate double-stranded DNA (dsDNA) molecules containing single-stranded DNA regions or nicks as well as relax negatively supercoiled DNA. Although the proteins share a mechanism of action and have similar structures, they participate in different cellular processes. Whereas topoisomerase III is a more efficient decatenase than topoisomerase I, the opposite is true for DNA relaxation. In order to investigate the differences in the mechanism of these two prototypical type IA topoisomerases, we studied DNA decatenation at the single-molecule level using braids of intact dsDNA and nicked dsDNA with bulges. We found that neither protein decatenates an intact DNA braid. In contrast, both enzymes exhibited robust decatenation activity on DNA braids with a bulge. The experiments reveal that a main difference between the unbraiding mechanisms of these topoisomerases lies in the pauses between decatenation cycles. Shorter pauses for topoisomerase III result in a higher decatenation rate. In addition, topoisomerase III shows a strong dependence on the crossover angle of the DNA strands. These real-time observations reveal the kinetic characteristics of the decatenation mechanism and help explain the differences between their activities.
机译:大肠杆菌拓扑异构酶I和III可以将含有单链DNA区域或缺口的双链DNA(dsDNA)分子分类,并消除负超螺旋DNA。尽管这些蛋白质具有共同的作用机制并具有相似的结构,但它们参与不同的细胞过程。拓扑异构酶III比拓扑异构酶I是更有效的脱氢酶,而DNA松弛则相反。为了研究这两种典型的IA型拓扑异构酶机制的差异,我们使用完整的dsDNA编织物和带有凸起的刻痕dsDNA的辫子在单分子水平上研究了DNA分离。我们发现这两种蛋白质都无法确定完整的DNA编织物。相比之下,两种酶对带有凸起的DNA编织物都表现出强大的脱级活性。实验表明,这些拓扑异构酶的非编织机制之间的主要区别在于脱环循环之间的停顿。拓扑异构酶III的停顿时间越短,其分解速率越高。此外,拓扑异构酶III对DNA链的交叉角表现出强烈的依赖性​​。这些实时观察揭示了分离机制的动力学特征,并有助于解释它们的活性之间的差异。

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