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首页> 外文期刊>Biochemical and Biophysical Research Communications >A surface plasmon resonance study of the intermolecular interaction between Escherichia coli topoisomerase I and pBAD/Thio supercoiled plasmid DNA.
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A surface plasmon resonance study of the intermolecular interaction between Escherichia coli topoisomerase I and pBAD/Thio supercoiled plasmid DNA.

机译:大肠杆菌拓扑异构酶I和PBAD / Thio超硅酸吡啶DNA之间分子间相互作用的表面等离子体共振研究。

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摘要

To date, the bacterial DNA topoisomerases are one of the major target biomolecules for the discovery of new antibacterial drugs. DNA topoisomerase regulates the topological state of DNA, which is very important for replication, transcription and recombination. The relaxation of negatively supercoiled DNA is catalyzed by bacterial DNA topoisomerase I (topoI) and this reaction requires Mg(2+). In this report, we first quantitatively studied the intermolecular interactions between Escherichia coli topoisomerase I (EctopoI) and pBAD/Thio supercoiled plasmid DNA using surface plasmon resonance (SPR) technique. The equilibrium dissociation constant (Kd) for EctopoI-pBAD/Thio interactions was determined to be about 8 nM. We then studied the effect of Mg(2+) on the catalysis of EctopoI-pBAD/Thio reaction. A slightly higher equilibrium dissociation constant (~15 nM) was obtained for Mg(2+) coordinated EctopoI (Mg(2+)EctopoI)-pBAD/Thio interactions. In addition, we observed a larger dissociation rate constant (kd) for Mg(2+)EctopoI-pBAD/Thio interactions (~0.043 s(-1)), compared to EctopoI-pBAD/Thio interactions (~0.017 s(-1)). These results suggest that enzyme turnover during plasmid DNA relaxation is enhanced due to the presence of Mg(2+) and furthers the understanding of importance of the Mg(2+) ion for bacterial topoisomerase I catalytic activity.
机译:迄今为止,细菌DNA拓扑异构酶是用于发现新的抗菌药物的主要目标生物分子之一。 DNA拓扑异构酶调节DNA的拓扑状态,对复制,转录和重组非常重要。通过细菌DNA拓扑异构酶I(TOPOI)催化消极超底DNA的松弛,并且该反应需要Mg(2+)。在本报告中,我们首先使用表面等离子体共振(SPR)技术定量地研究了大肠杆菌拓扑异构酶I(EcTopoI)和PBAD / ThiO超底菌质质粒DNA之间的分子间相互作用。将Ectopoi-pBAD /硫代相互作用的平衡解离常数(Kd)确定为约8nm。然后,我们研究了Mg(2+)对异位-PBAD /硫代反应催化的影响。获得略高的平衡解离常数(〜15nm),得到Mg(2+)配位突泡(Mg(2+)EctopoI)-pbad /硫代相互作用。此外,与Ececoopoi-PBAD / Thio相互作用相比,我们观察到Mg(2+)异位-PBAD /硫代相互作用(〜0.043s(-1))的较大解离速率常数(kd)(〜0.043s(-1)(〜0.017 s(-1) )))。这些结果表明,由于Mg(2+)的存在,提高了质粒DNA松弛期间的酶周转,并使Mg(2+)离子对细菌拓扑异构酶I催化活性的理解理解。

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