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Mechanisms of chiral discrimination by topoisomerase IV

机译:拓扑异构酶IV鉴别手性的机理

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摘要

Topoisomerase IV (Topo IV), an essential ATP-dependent bacterial type II topoisomerase, transports one segment of DNA through a transient double-strand break in a second segment of DNA. In vivo, Topo IV unlinks catenated chromosomes before cell division and relaxes positive supercoils generated during DNA replication. In vitro, Topo IV relaxes positive supercoils at least 20-fold faster than negative supercoils. The mechanisms underlying this chiral discrimination by Topo IV and other type II topoisomerases remain speculative. We used magnetic tweezers to measure the relaxation rates of single and multiple DNA crossings by Topo IV. These measurements allowed us to determine unambiguously the relative importance of DNA crossing geometry and enzymatic proces-sivity in chiral discrimination by Topo IV. Our results indicate that Topo IV binds and passes DNA strands juxtaposed in a nearly perpendicular orientation and that relaxation of negative super-coiled DNA is perfectly distributive. Together, these results suggest that chiral discrimination arises primarily from dramatic differences in the processivity of relaxing positive and negative supercoiled DNA: Topo IV is highly processive on positively supercoiled DNA, whereas it is perfectly distributive on negatively supercoiled DNA. These results provide fresh insight into topoisomerase mechanisms and lead to a model that reconciles contradictory aspects of previous findings while providing a framework to interpret future results.
机译:拓扑异构酶IV(Topo IV)是一种必不可少的ATP依赖型细菌II型拓扑异构酶,可通过第二个DNA片段中的瞬时双链断裂转运一个DNA片段。在体内,Topo IV在细胞分裂前将链状染色体解链,并使DNA复制过程中产生的阳性超螺旋松弛。在体外,Topo IV使阳性超螺旋松弛至少比阴性超螺旋快20倍。 Topo IV和其他II型拓扑异构酶进行手性识别的基础机制仍是推测性的。我们使用磁镊子测量Topo IV穿越单个和多个DNA的弛豫率。这些测量值使我们能够明确确定在Topo IV手性鉴别中,DNA越过几何形状和酶促过程的相对重要性。我们的结果表明,Topo IV结合并通过以近乎垂直方向并置的DNA链,并且负超螺旋DNA的松弛是完美的分布。总之,这些结果表明,手性歧视主要源于松弛的正负超螺旋DNA的合成能力的巨大差异:Topo IV对正超螺旋DNA具有高度的合成能力,而对负超螺旋DNA具有很好的分布性。这些结果提供了对拓扑异构酶机制的新见解,并导致了一个模型,该模型调和了先前发现的矛盾方面,同时提供了解释未来结果的框架。

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