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      Pharmacoinformatics exploration of polyphenol oxidases leading to novel inhibitors by virtual screening and molecular dynamic simulation study.

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          Abstract

          Polyphenol oxidases (PPOs)/tyrosinases are metal-dependent enzymes and known as important targets for melanogenesis. Although considerable attempts have been conducted to control the melanin-associated diseases by using various inhibitors. However, the exploration of the best anti-melanin inhibitor without side effect still remains a challenge in drug discovery. In present study, protein structure prediction, ligand-based pharmacophore modeling, virtual screening, molecular docking and dynamic simulation study were used to screen the strong novel inhibitor to cure melanogenesis. The 3D structures of PPO1 and PPO2 were built through homology modeling, while the 3D crystal structures of PPO3 and PPO4 were retrieved from PDB. Pharmacophore modeling was performed using LigandScout 3.1 software and top five models were selected to screen the libraries (2601 of Aurora and 727, 842 of ZINC). Top 10 hit compounds (C1-10) were short-listed having strong binding affinities for PPO1-4. Drug and synthetic accessibility (SA) scores along with absorption, distribution, metabolism, excretion and toxicity (ADMET) assessment were employed to scrutinize the best lead hit. C4 (name) hit showed the best predicted SA score (5.75), ADMET properties and drug-likeness behavior among the short-listed compounds. Furthermore, docking simulations were performed to check the binding affinity of C1-C10 compounds against target proteins (PPOs). The binding affinity values of complex between C4 and PPOs were higher than those of other complexes (-11.70, -12.1, -9.90 and -11.20kcal/mol with PPO1, PPO2, PPO3, or PPO4, respectively). From comparative docking energy and binding analyses, PPO2 may be considered as better target for melanogenesis than others. The potential binding modes of C4, C8 and C10 against PPO2 were explored using molecular dynamics simulations. The root mean square deviation and fluctuation (RMSD/RMSF) graphs results depict the significance of C4 over the other compounds. Overall, bioactivity and ligand efficiency profiles suggested that the proposed hit may be more effective inhibitors for melanogenesis.

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          Author and article information

          Journal
          Comput Biol Chem
          Computational biology and chemistry
          Elsevier BV
          1476-928X
          1476-9271
          Jun 2017
          : 68
          Affiliations
          [1 ] Department of Biology, College of Natural Sciences, Kongju National University, Gongju 32588, Republic of Korea. Electronic address: mubashirhassan_gcul@yahoo.com.
          [2 ] Department of Biology, College of Natural Sciences, Kongju National University, Gongju 32588, Republic of Korea. Electronic address: qamar.abbas.qau@gmail.com.
          [3 ] Department of Chemistry, Allama Iqbal Open University, Islamabad 44000, Pakistan. Electronic address: mzchem@yahoo.com.
          [4 ] School of Social Sciences and Psychology, Westren Sydney University, Sydney, New South Wales, Australia; MARCS Institute for Brain and Behaviour, Westren Sydney University, Sydney, New South Wales, Australia. Electronic address: a.moustafa@westernsydney.edu.au.
          [5 ] Department of Biology, College of Natural Sciences, Kongju National University, Gongju 32588, Republic of Korea. Electronic address: dnalove@kongju.ac.kr.
          Article
          S1476-9271(16)30590-4
          10.1016/j.compbiolchem.2017.02.012
          28340400
          1a2d4b29-9b35-4eb8-bd2d-6b1ff5bc8f9d
          History

          Docking molecular dynamic simulation,Molecular modeling,Polyphenol oxidases (PPOs),Tyrosinase inhibitors

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