Efficient Refinement of Complex Structures of Flexible Histone Peptides Using Post-Docking Molecular Dynamics Protocols

被引:1
作者
Bayarsaikhan, Bayartsetseg [1 ]
Zsido, Balazs Zoltan [1 ]
Borzsei, Rita [1 ]
Hetenyi, Csaba [1 ,2 ]
机构
[1] Univ Pecs, Med Sch, Dept Pharmacol & Pharmacotherapy, Pharmacoinformat Unit, Szigeti Ut 12, H-7624 Pecs, Hungary
[2] Natl Lab Drug Res & Dev, Magyar Tudosok Krt 2, H-1117 Budapest, Hungary
关键词
peptide; histones; docking; refinement; molecular dynamics; water; PROTEIN-PROTEIN DOCKING; LINEAR CONSTRAINT SOLVER; BINDING FREE-ENERGIES; GENERAL FORCE-FIELD; WEB SERVER; SIDE-CHAIN; SOFTWARE NEWS; PHD FINGER; STRUCTURE PREDICTION; POTENTIAL FUNCTIONS;
D O I
10.3390/ijms25115945
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Histones are keys to many epigenetic events and their complexes have therapeutic and diagnostic importance. The determination of the structures of histone complexes is fundamental in the design of new drugs. Computational molecular docking is widely used for the prediction of target-ligand complexes. Large, linear peptides like the tail regions of histones are challenging ligands for docking due to their large conformational flexibility, extensive hydration, and weak interactions with the shallow binding pockets of their reader proteins. Thus, fast docking methods often fail to produce complex structures of such peptide ligands at a level appropriate for drug design. To address this challenge, and improve the structural quality of the docked complexes, post-docking refinement has been applied using various molecular dynamics (MD) approaches. However, a final consensus has not been reached on the desired MD refinement protocol. In this present study, MD refinement strategies were systematically explored on a set of problematic complexes of histone peptide ligands with relatively large errors in their docked geometries. Six protocols were compared that differ in their MD simulation parameters. In all cases, pre-MD hydration of the complex interface regions was applied to avoid the unwanted presence of empty cavities. The best-performing protocol achieved a median of 32% improvement over the docked structures in terms of the change in root mean squared deviations from the experimental references. The influence of structural factors and explicit hydration on the performance of post-docking MD refinements are also discussed to help with their implementation in future methods and applications.
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页数:24
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