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Effect of the explicit flexibility of the InhA enzyme from Mycobacterium tuberculosis in molecular docking simulations

机译:分子对接模拟中结核分枝杆菌InhA酶显性柔性的影响

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摘要

BackgroundProtein/receptor explicit flexibility has recently become an important feature of molecular docking simulations. Taking the flexibility into account brings the docking simulation closer to the receptors’ real behaviour in its natural environment. Several approaches have been developed to address this problem. Among them, modelling the full flexibility as an ensemble of snapshots derived from a molecular dynamics simulation (MD) of the receptor has proved very promising. Despite its potential, however, only a few studies have employed this method to probe its effect in molecular docking simulations. We hereby use ensembles of snapshots obtained from three different MD simulations of the InhA enzyme from M. tuberculosis (Mtb), the wild-type (InhA_wt), InhA_I16T, and InhA_I21V mutants to model their explicit flexibility, and to systematically explore their effect in docking simulations with three different InhA inhibitors, namely, ethionamide (ETH), triclosan (TCL), and pentacyano(isoniazid)ferrate(II) (PIF).
机译:背景技术蛋白质/受体的显式柔性最近已成为分子对接模拟的重要特征。考虑到灵活性,对接模拟使其更接近受体在自然环境中的真实行为。已经开发出几种方法来解决这个问题。其中,将完整的灵活性建模为由受体的分子动力学模拟(MD)导出的快照的集合非常有效。尽管有其潜力,但是,只有很少的研究采用这种方法来探究其在分子对接模拟中的作用。我们在此使用从结核分枝杆菌(Mtb),野生型(InhA_wt),InhA_I16T和InhA_I21V突变体的InhA酶的三种不同MD模拟获得的快照合集来模拟其显式灵活性,并系统地探索它们的作用与三种不同的InhA抑制剂(乙乙酰胺(ETH),三氯生(TCL)和戊酸高铁(异烟肼)II(PIF))对接模拟。

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