Anti-HCV NS2-3 potential of selected plant bioactive compounds revealed by docking, simulation and DFT

Article


Mboto, C.I., Mbim, E.N., Edet, U.O., Lugos, M., Abdalla, M., Ndifon, W.O., Ebenso, E.E., Udo, S.I., Egharevba, H.O., George, U.E., El-Sayed, M.H. and Abdalla, S.F. 2026. Anti-HCV NS2-3 potential of selected plant bioactive compounds revealed by docking, simulation and DFT. Scientific Reports. 16. https://doi.org/10.1038/s41598-025-18577-8
TypeArticle
TitleAnti-HCV NS2-3 potential of selected plant bioactive compounds revealed by docking, simulation and DFT
AuthorsMboto, C.I., Mbim, E.N., Edet, U.O., Lugos, M., Abdalla, M., Ndifon, W.O., Ebenso, E.E., Udo, S.I., Egharevba, H.O., George, U.E., El-Sayed, M.H. and Abdalla, S.F.
Abstract

Presently, there is no vaccine for hepatitis C virus (HCV) and available drugs present with adverse effects that have prompted the search for newer and safer alternatives. The present study evaluated the anti-HCV potential of selected bioactive compounds from Jatropha tanjorensis and Solanum nigrum against HCV non-structural (NS2-3) protein. The selected bioactive compounds (3-methoxy-4-methylaniline, 2,2’-Azoxybis[3-methylpyridine], isopropyl thiophosphondiamide, and squalene) were screened for compliance with Lipinski’s role five (LRF) and toxicity using the MCULE tool. Furthermore, the ligands were docked against the NS2-3 (2hd0) protein with ledipasvir, and a co-crystal as controls using the Autodock Vina tool. Docking scores were generated using the London dG scoring function. Following docking, a 200 nanosecond (nsec) simulation run was performed using the Schrodinger Desmond module. In addition, density functional theory (DFT) was utilised to evaluate their reactivities. The selected compounds were not toxic and obeyed the LRF. Molecular docking scores for ledipasvir and the co-crystal were − 8.8 and − 6.3 kcal/mol, respectively while of the ligands ranged from − 3.5 to -7.3 kcal/mol, implying favourable bindings. The amino acid residues involved in the binding were those within the active site of the target protein. RMSD values indicated that isopropyl thiophosphondiamide was the most stable ligand. PSA, MolSA and SASA values suggest stability and availability for water contact. DFT calculations indicate that the compounds were moderately stable and highly reactive, with energy gaps that ranged from 0.5810 to 1.0621 eV. The favourable pharmacokinetics and docking outputs observed in this study needs to be further validated using in vitro and in vivo studies.

KeywordsHCV; Bioactive compounds; DFT; Molecular docking; Jatropha tanjorensis and Solanum nigrum; Simulation
Sustainable Development Goals3 Good health and well-being
Middlesex University ThemeHealth & Wellbeing
PublisherNature Research
JournalScientific Reports
ISSN
Electronic2045-2322
Publication dates
Online19 Feb 2026
Print23 Mar 2026
Publication process dates
Submitted23 Jan 2025
Accepted02 Sep 2025
Deposited15 Sep 2026
Output statusPublished
Publisher's version
License
File Access Level
Open
Copyright Statement

This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/

Digital Object Identifier (DOI)https://doi.org/10.1038/s41598-025-18577-8
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