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Comparison of the binding energies of approved mpox drugs and phytochemicals through molecular docking, molecular dynamics simulation, and ADMET studies: An in silico approach

  • Ranjan K. Mohapatra
  • , Ahmed Mahal
  • , Azaj Ansari
  • , Manjeet Kumar
  • , Jyoti Prakash Guru
  • , Ashish K. Sarangi
  • , Aly Abdou
  • , Snehasish Mishra
  • , Mohammed Aljeldah
  • , Bashayer M. AlShehail
  • , Mohammed Alissa
  • , Mohammed Garout
  • , Ahmed Alsayyah
  • , Ahmad A. Alshehri
  • , Ahmed Saif
  • , Abdulaziz Alqahtani
  • , Fahd A. Alshehri
  • , Aref A. Alamri
  • , Ali A. Rabaan
  • Biju Patnaik University of Technology
  • Cihan University-Erbil
  • Central University of Haryana
  • Centurion University of Technology and Management
  • Sohag University
  • Kalinga Institute of Industrial Technology
  • University of Hafr Al Batin
  • Imam Abdulrahman Bin Faisal University
  • Umm Al-Qura University
  • Najran University
  • King Khalid University
  • East Jeddah General Hospital
  • Riyadh Regional Laboratory
  • Johns Hopkins Aramco Healthcare
  • Alfaisal University
  • The University of Haripur

Research output: Contribution to journalArticlepeer-review

96 Scopus citations

Abstract

The mpox (previously monkeypox) outbreak in more than 100 non-endemic countries in 2022 posed a serious global health concern. Mpox is emerging as a global public health threat from a seemingly neglected disease. A42R profilin-like protein from mpox virus (PDB ID: 4QWO) could be a preferred target lead. The binding affinity of commonly used drugs/mAbs (tecovirimat, brincidofovir, cidofovir) for A42R profilin-like protein was examined in silico through molecular docking. Further, the results were compared with those of the phytochemicals curcumin, rutin, and theaflavin. Tecovirimat (−7.31 kcal/mol, IC50 = 4.39 µM) and theaflavin (−6.99 kcal/mol, IC50 = 7.54 µM) had the highest affinities. Molecular dynamics simulation of the theaflavin–4QWO complex was performed to ascertain the stability of ligand–protein interactions in natural charge, molecular electrostatic potential, and frontier molecular orbital analyses. The predicted QSAR and pharmacokinetic properties of all compounds were evaluated to find a suitable candidate for designing and developing new drugs. The evaluated log P values for brincidofovir and tecovirimat were higher than those of the other drugs in the QSAR study. Theaflavin had an impressive log P of 4.77, which hints at its high biological activity. The findings recommend further in vitro experimental validation to develop potential low-cost mpox therapies.

Original languageEnglish
Pages (from-to)118-132
Number of pages15
JournalJournal of Biosafety and Biosecurity
Volume5
Issue number3
DOIs
StatePublished - Sep 2023

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • ADMET
  • DFT
  • MD simulation
  • Molecular docking
  • Mpox
  • QSAR

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