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首页> 外文期刊>Cell biochemistry and biophysics >Sliding Clamp of DNA Polymerase III as a Drug Target for TB Therapy: Comprehensive Conformational and Binding Analysis from Molecular Dynamic Simulations
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Sliding Clamp of DNA Polymerase III as a Drug Target for TB Therapy: Comprehensive Conformational and Binding Analysis from Molecular Dynamic Simulations

机译:DNA聚合酶III的滑动夹作为结核病治疗的药物靶标:分子动力学模拟的全面构象和结合​​分析

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摘要

Tuberculosis, caused by Mycobacterium tuberculosis, is one of the most common causes of death in the world. Mycobacterium tuberculosis -sliding clamp is a protein essential for many important DNA transactions including replication and DNA repair proteins, thus, a potential drug target for tuberculosis. Further investigation is needed in understanding DNA polymerase sliding clamp structure, especially from a computational perspective. In this study, we employ a wide-range of comparative molecular dynamic analyses on two systems: Mycobacterium tuberculosis - sliding clamp enzyme in its apo and bound form. The results reported in this study shows apo conformation to be less stable, as compared to bound conformation with an average radius of gyration of 25.812 and 25.459 , respectively. This was further supported by root mean square fluctuation, where an apo enzyme showed a higher degree of flexibility. However, the presence of the ligand lowers radius of gyration and root mean square fluctuation and also leads to an existence of negative correlated motions. Principal component analysis further justifies the same findings, whereby the apo enzyme exhibits a higher fluctuation compared to the bound complex. In addition, a stable 3(10) helix located at the binding site appears to be unstable in the presence of the ligand. Hence, it is possible that the binding of the ligand may have caused a rearrangement of the structure, leading to a change in the unwinding of 3(10) helix. Findings reported in this study further enhance the understanding of Mycobacterium tuberculosis -DnaN and also give a lead to the development of potent tuberculosis drugs.
机译:由结核分枝杆菌引起的结核病是世界上最常见的死亡原因之一。结核分枝杆菌滑动钳是许多重要DNA交易(包括复制和DNA修复蛋白)必不可少的蛋白质,因此是结核病的潜在药物靶标。理解DNA聚合酶滑动夹结构需要进一步的研究,尤其是从计算的角度。在这项研究中,我们在两个系统上进行了广泛的比较分子动力学分析:结核分枝杆菌-载脂蛋白和结合形式的滑动钳位酶。这项研究报告的结果显示,与平均旋转半径分别为25.812和25.459的结合构象相比,载脂蛋白构象不稳定。均方根波动进一步支持了这一点,其中载脂蛋白酶显示出更高的柔韧性。但是,配体的存在降低了回转半径和均方根波动,并且还导致存在负相关运动。主成分分析进一步证明了相同的发现,即与结合的复合物相比,载脂蛋白酶表现出更高的波动。此外,在配体存在下,位于结合位点的稳定的3(10)螺旋似乎不稳定。因此,配体的结合可能已经引起结构的重排,从而导致3(10)螺旋的解旋变化。这项研究报告的发现进一步增强了对结核分枝杆菌-DnaN的了解,也为有效的结核病药物的开发提供了线索。

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