基于自动对接的增量对接协议,改进大配体的对接

A. Dhanik, J. McMurray, L. Kavraki
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引用次数: 5

摘要

众所周知,具有许多可旋转键的大配体的计算机辅助对接是极其困难的。AutoDock是一种广泛使用的对接程序,可以准确快速地对接具有多达5或6个可旋转键的小配体。然而,大配体的对接不是很精确,而且计算成本很高。在本文中,我们提出了一种基于autodock的增量对接协议,该协议将一个大配体增量地对接到它的靶蛋白上。首先选择一个大配体的片段,然后进行对接。最好的对接构象会逐渐生长并再次对接,这一过程不断重复,直到配体的所有原子都被对接。每个对接操作都使用AutoDock执行。然而,在每次对接操作中,只允许少量的可旋转键旋转。我们对来自pdbinding数据库核心集的73个蛋白质配体复合物数据集进行了系统的对接研究。配体中可旋转键的数目从7到30不等。通过对接实验来评估增量协议与AutoDock标准协议的对接性能。研究结果表明,在数据集上,使用我们的增量协议对接大配体的计算速度比使用AutoDock的标准协议对接快23倍,并且具有相当或更好的准确性。我们建议,对于对接大配体,我们的增量协议可以用作AutoDock标准协议的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Auto dock-based incremental docking protocol to improve docking of large ligands
It is well known that computer-aided docking of large ligands, with many rotatable bonds, is extremely difficult. AutoDock is a widely used docking program that can dock small ligands, with upto 5 or 6 rotatable bonds, accurately and quickly. Docking of larger ligands, however, is not very accurate and is computationally expensive. In this paper we present an AutoDock-based incremental docking protocol which docks a large ligand to its target protein in increments. A fragment of the large ligand is first chosen and then docked. Best docked conformations are incrementally grown and docked again, and this process is repeated until all the atoms of the ligand are docked. Each docking operation is performed using AutoDock. However, in each docking operation only a small number of rotatable bonds are allowed to rotate. We did a systematic docking study on a dataset of 73 protein-ligand complexes derived from the core set of PDBbind database. The number of rotatable bonds in the ligands vary from 7 to 30. Docking experiments were done to evaluate the docking performance of the incremental protocol in comparison to AutoDock's standard protocol. Results from the study show that, on average over the dataset, docking of large ligands using our incremental protocol is 23-fold computationally faster than docking using AutoDock's standard protocol and also has comparable or better accuracy. We propose that, for docking large ligands, our incremental protocol can be used as an alternative to AutoDock's standard protocol.
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