Multiple receptor conformers based molecular docking study of fluorine enhanced ethionamide with mycobacterium enoyl ACP reductase (InhA)

被引:24
作者
Khan, Akib Mahmud [1 ,2 ]
Shawon, Jakaria [1 ,2 ]
Halim, Mohammad A. [1 ,3 ]
机构
[1] BICCB, Red Green Res Ctr, Div Comp Aided Drug Design, 218 Elephant Rd, Dhaka 1205, Bangladesh
[2] Univ Dhaka, Dept Biochem & Mol Biol, Dhaka 1000, Bangladesh
[3] Univ Lyon 1, CNRS, Inst Lumiere Matiere, F-69622 Villeurbanne, France
关键词
Molecular docking; Molecular dynamics; Drug design; Ensemble-based docking; Quantum calculation; Enoyl ACP reductase (InhA); ANTITUBERCULOSIS DRUG ETHIONAMIDE; MEDICINAL CHEMISTRY; PHARMACEUTICALS; CONFORMATIONS; TUBERCULOSIS; ACCURACY; DYNAMICS; HEATS;
D O I
10.1016/j.jmgm.2017.09.010
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A major limitation in current molecular docking method is that of failure to account for receptor flexibility. Herein we report multiple receptor conformers based molecular docking as a practical alternative to account for the receptor flexibility. Multiple (forty) conformers of Mycobacterium Enoyl ACP Reductase (InhA) are generated from Molecular Dynamics simulation and twenty crystallographic structures of InhA bound to different inhibitors are obtained from the Protein Data Bank. Fluorine directed modifications are performed to currently available anti-tuberculosis drug ethionamide. The modified drugs are optimized using B3LYP 6-31G (d,p) level of theory. Dipole moment, frontier orbital gap and thermodynamical properties such as electronic energy, enthalpy and Gibbs free energy of these optimized drugs are investigated. These drugs are subsequently docked against the conformers of InhA. Molecular docking against multiple InhA conformations show variation in ligand binding affinity and suggest that Ser94, Gly96, Lys165 and Ile194 amino acids play critical role on strong drug-InhA interaction. Modified drug N1 showed greater binding affinity compared to EN in most conformations. Structure of PDB ID: 2NSD and snapshot conformer at 5.5 ns show most favorable binding with N1 compared to other conformers. Fluorine participates in forming fluorine bonds and contributes significantly in increasing binding affinity. Our study reveal that addition of trifluoromethyl group explicitly shows promise in improving thermodynamic properties and in enhancing hydrogen bonding and non-bonded interactions. Molecular dynamics (MD) simulation show that EN and N1 remained in the binding pocket similar to the docked pose of EN-InhA and El-InhA complexes and also suggested that InhA binds to its inhibitor in inhibitor induced folding manner. ADMET calculations predict modified drugs to have improved pharmacokinetic properties. Our study concludes that multiple receptor conformers based molecular docking can be an alternative to study the effect of receptor flexibility in ligand binding and fluorine directed modifications can improve drug efficacy. (c) 2017 Elsevier Inc. All rights reserved.
引用
收藏
页码:386 / 398
页数:13
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