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首页> 外文期刊>Journal of molecular modeling >Thermodynamic computational approach to capture molecular recognition in the binding of different inhibitors to the DNA gyrase B subunit from Escherichia coli
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Thermodynamic computational approach to capture molecular recognition in the binding of different inhibitors to the DNA gyrase B subunit from Escherichia coli

机译:热力学计算方法来捕获分子识别中不同抑制剂与大肠杆菌DNA促旋酶B亚基结合的能力

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摘要

DNA gyrase subunit B, that catalyzes the hydrolysis of ATP, is an attractive target for the development of antibacterial drugs. This work is intended to rationalize molecular recognition at DNA gyrase B enzyme - inhibitor binding interface through the evaluation of different scoring functions in finding the correct pose and scoring properly 50 Escherichia coli DNA Gyrase B inhibitors belonging to five different classes. Improving the binding free energy calculation accuracy is further attempted by using rescoring schemes after short molecular dynamic simulations of the obtained docked complexes. These data are then compared with the corresponding experimental enzyme activity data. The results are analyzed from a structural point of view emphasizing the strengths and limitations of the techniques applied in the study.
机译:催化ATP水解的DNA促旋酶亚基B是开发抗菌药物的诱人靶标。这项工作旨在通过评估不同的评分功能来合理寻找DNA促旋酶B酶-抑制剂结合界面上的分子识别,以找到正确的姿势并正确评分50种属于五个不同类别的大肠杆菌DNA促旋酶B抑制剂。在获得的对接配合物的短分子动力学模拟之后,通过使用计分方案进一步尝试提高结合自由能的计算精度。然后将这些数据与相应的实验酶活性数据进行比较。从结构的角度分析了结果,强调了研究中应用技术的优势和局限性。

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