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Docking accuracy enhanced by QM-derived protein charges
Authors:Dawei Zhang  Haisheng Li  Huixian Wang  Liben Li
Institution:1. School of Physics and Engineering, Henan University of Science and Technology, Luoyang, P. R. Chinasunstar53@126.com;3. School of Physics and Engineering, Henan University of Science and Technology, Luoyang, P. R. China
Abstract:Effects of protein polari sation on docking accuracy were investigated using molecular docking programme AutoDock 4 in which topology-specific empirical Gasteiger charges were replaced with Polarised protein-specific charges (PPC) to represent quantum mechanics- polarised protein. Docking was successfully conducted for 50 diverse protein–ligand complexes. The docking with PPC charges shows a decrease in the root-mean-square deviation (RMSD) values of ligands compared to those from the docking with Gasteiger charges. Ligand binding orientations and their key interactions such as hydrogen bonding interactions in X-ray structures were substantially reproduced in complexes docked using PPC scheme with 98% of the RMSDs of the best docking poses less than 2 Å compared to 74% in the docking with Gasteiger charges. Considerable improvements in docking accuracy were observed by simply altering the atomic partial charges in the scoring function, which reflects the importance of protein polarisation in molecular docking. Further research can be carried out to (1) include polarisation of both ligands and proteins to account for polarisation effects within protein and between protein and ligand, and (2) develop a PPC-based scoring function to increase the docking accuracies for protein–ligand complexes from a larger variety of protein families.
Keywords:Molecular docking  polarised force field  QM-derived protein charge  polarised protein-specific charge
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