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首页> 外文期刊>Journal of Medicinal Chemistry >Two-stage method for protein-ligand docking.
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Two-stage method for protein-ligand docking.

机译:蛋白质-配体对接的两阶段方法。

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A two-stage method for the computational prediction of the structure of protein-ligand complexes is proposed. Given an experimentally determined structure of the protein, in the first stage a large number of plausible ligand conformations is generated using the fast docking algorithm FlexX. In the second stage these conformations are minimized and reranked using a method based on a classical force field. The two-stage method is tested for 10 different protein-ligand complexes. For 9 of them experimentally determined structures are known. It turns out that the two-stage method strongly improves the predictive power as compared to that of the fast docking stage alone. The tenth case is a bona fide prediction of a complex of thrombin with a new inhibitor for which no experimentally determined structure is available so far.
机译:提出了蛋白质-配体复合物结构的计算预测的两阶段方法。给定实验确定的蛋白质结构,在第一阶段,使用快速对接算法FlexX会生成大量可能的配体构象。在第二阶段,使用基于经典力场的方法最小化这些构象并对其进行排名。测试了两种方法的10种不同的蛋白质-配体复合物。对于其中的9种,实验确定的结构是已知的。事实证明,与单独的快速对接阶段相比,两阶段方法极大地提高了预测能力。第十种情况是凝血酶与一种新抑制剂的复合物的真实预测,到目前为止,尚无实验确定的结构。

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