Identification of potential inhibitors against E.coli via novel approaches based on deep learning and quantum mechanics-based atomistic investigations

被引:6
作者
Aziz, Mubashir [1 ]
Ejaz, Syeda Abida [1 ]
Alsfouk, Bshra A. [2 ]
Sultan, Ahlam [2 ]
Li, Chen [3 ]
机构
[1] Islamia Univ Bahawalpur, Fac Pharm, Dept Pharmaceut Chem, Bahawalpur 63100, Pakistan
[2] Princess Nourah Bint Abdulrahman Univ, Coll Pharm, Dept Pharmaceut Sci, POB 84428, Riyadh 11671, Saudi Arabia
[3] Free Univ Berlin, Dept Biol Chem Pharm, D-14195 Berlin, Germany
关键词
DNA gyrase B; Pharmacophore; Deep learning; DFTs; Molecular dynamics simulation; GAUSSIAN-BASIS SETS; ZETA VALENCE QUALITY; MOLECULAR DOCKING; DRUG DISCOVERY; DNA GYRASE; ATOMS LI; DENSITY; ANTIBIOTICS; DYNAMICS; PHARMACOKINETICS;
D O I
10.1016/j.abb.2023.109761
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
Currently, drug resistance to commercially available antibiotics is imparting negative consequences to global health, and the development of novel antibiotics in a timely manner is a prime need of the hour. In the current study, an e-pharmacophore model was built using the 3D structure of DNA gyrase in complex with a standard inhibitor. The generated model was subjected to a pharmacophore based virtual screening against 45,257,086 molecules having 223,460,579 conformers available in MCULE database. Pharmacophore based screening retrieved eight molecules as top hit based on pharmacophoric features in comparison to standard inhibitors. Afterward, all eight compounds were subjected molecular docking based on deep learning algorithm. The molecular docking revealed that compound MCULE-6042843173 and MCULE-2362244223 had significant binding orientation inside active pocket of targeted protein with binding affinity of-9.52 and-9.24 kcal/mol respectively. In addition, density functional theory studies (DFT) were performed to evaluate quantum mechanics of top ranked compounds which were investigated through quantum mechanics (QM) computations which strongly assisted the findings of other in-silico investigations. Consequently, the MCULE-6042843173 and MCULE-2362244223 were subjected to MD simulation studies for evaluation of stability, hydrogen bond analysis, van der Waals interactions, and the contact profile of compounds with targeted amino acid residues. Findings of current study suggested MCULE-6042843173 and MCULE-2362244223 as potential and novel inhibitor of DNA Gyrase enzyme.
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页数:20
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