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Reversibly Sampling Conformations and Binding Modes Using Molecular Darting

机译:利用分子飞镖可逆地采样构象和结合模式

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Sampling multiple binding modes of a ligand in a single molecular dynamics simulation is difficult. A given ligand may have many internal degrees of freedom, along with many different ways it might orient itself in a binding site or across several binding sites, all of which might be separated by large energy barriers. We have developed a novel Monte Carlo move called molecular darting (MolDarting) to reversibly sample between predefined binding modes of a ligand. Here, we couple this with nonequilibrium candidate Monte Carlo (NCMC) to improve acceptance of moves. We apply this technique to a simple dipeptide system, a ligand binding to T4 lysozyme L99A, and ligand binding to HIV integrase to test this new method. We observe significant increases in acceptance compared to uniformly sampling the internal and rotational/translational degrees of freedom in these systems.
机译:在单个分子动力学模拟中,对配体的多种结合模式进行采样是困难的。一个给定的配体可能有许多内部自由度,以及许多不同的方式,它可能在一个结合位点或几个结合位点中定向,所有这些都可能被大的能量屏障隔开。我们开发了一种称为分子飞镖(MolDarting)的新型蒙特卡罗方法,可以在配体的预定义结合模式之间进行可逆采样。在这里,我们将其与非平衡候选蒙特卡罗(NCMC)相结合,以提高对移动的接受度。我们将该技术应用于一个简单的二肽系统,一个与T4溶菌酶L99A结合的配体,以及一个与HIV整合酶结合的配体,以测试这种新方法。与均匀采样这些系统的内部和旋转/平移自由度相比,我们观察到接受度显著增加。

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