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Ab initio molecular simulations on the binding properties between mycobacterial FtsZ and its inhibitor

机译:从头算分子模拟分枝杆菌FtsZ及其抑制剂之间的结合特性

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Filamenting temperature-sensitive mutant Z (FtsZ) is recognized to be essential for performing bacteria cell division. Since the inhibition of activity and polymerization of FtsZ prevents the mycobacteria reproduction, five types of FtsZ inhibitors were defined in the previous experiments, and their effect on FtsZ was investigated. In the present study, we employ these inhibitors as ligands and investigate the specific interactions between FtsZ and these inhibitors at atomic and electronic levels, using ab initio molecular simulations based on protein-ligand docking, classical molecular mechanics optimization and ab initio fragment molecular orbital (FMO) calculations. From the ab initio molecular simulations, some key amino acid residues of FtsZ for the strong binding between FtsZ and ligand are highlighted. Based on the results, we propose a new inhibitor and demonstrate that it has a large binding affinity to FtsZ to be a potent inhibitor to FtsZ.
机译:细丝温度敏感突变体Z(FtsZ)被认为是进行细菌细胞分裂必不可少的。由于抑制FtsZ的活性和聚合会阻止分枝杆菌繁殖,因此在先前的实验中定义了五种类型的FtsZ抑制剂,并研究了它们对FtsZ的影响。在本研究中,我们使用基于蛋白质-配体对接的从头算分子模拟,经典分子力学优化和从头算片段分子轨道(在原子和电子水平上)研究这些抑制剂作为配体并研究FtsZ与这些抑制剂之间的特异性相互作用。 FMO)计算。从头开始进行分子模拟,突出显示了FtsZ和配体之间强结合的一些关键氨基酸残基。根据结果​​,我们提出了一种新的抑制剂,并证明了它对FtsZ的结合亲和力强,是对FtsZ的有效抑制剂。

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