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Functional characterization and structural prediction of hypothetical proteins in monkeypox virus and identification of potential inhibitors

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dc.contributor.author Raen, Reana
dc.contributor.author Islam, Muhammad Muinul
dc.contributor.author Islam, Redwanul
dc.contributor.author Islam, Md. Rabiul
dc.contributor.author Jarin, Tanima
dc.date.accessioned 2025-12-10T10:08:48Z
dc.date.available 2025-12-10T10:08:48Z
dc.date.issued 2024-07
dc.identifier.uri https://doi.org/10.1007/s11030-024-10935-4
dc.description.abstract The excessive activation of the monkeypox virus (MPXV-Congo_8-156) is linked to various skin and respiratory disorders such as rashes, fluid-filled blisters, swollen lymph nodes and encephalitis (inflammation of the brain), highlighting MPXV-Congo_8-156 as a promising target for drug intervention. Despite the effectiveness of Cidofovir, in inhibiting MPXV activity, its limited ability to penetrate the skin and its strong side effects restrict its application. To address this challenge, we screened 500 compounds capable of penetrating the skin and gastrointestinal tract to identify potent MPXV inhibitors. Various characterization schemes and structural models of MPXV-Congo_8-156 were explored with bioinformatics tools like PROTPARAM, SOPMA, SWISS-MODEL and PROCHECK. Using molecular docking in PyRx, we evaluated the binding affinities of these compounds with MPXV-Congo_8-156 and identified the top five candidates ranging from − 9.2 to − 8.8 kcal/mol. ADMET analysis indicated that all five compounds were safer alternatives, showing no AMES toxicity or carcinogenicity in toxicological assessments. Molecular dynamics (MD) simulations, conducted for 100 ns each, confirmed the docking interactions of the top five compounds alongside the control (Cidofovir), validating their potential as MPXV inhibitors. The compounds with PubChem CID numbers 4061636, 4422538, 3583576, 4856107 and 4800629 demonstrated strong support in terms of root-mean-square deviation (RMSD), root-mean-square fluctuation (RMSF), radius of gyration (Rg), solvent-accessible surface area (SASA) value, hydrogen bond analysis, and Molecular Mechanics Poisson-Boltzmann Surface Area (MM-PBSA) analysis. Thus, our investigation identified these five compounds as promising inhibitors of MPXV, offering potential therapeutic avenues. However, further in vivo studies are necessary to validate our findings. en_US
dc.language.iso en en_US
dc.publisher Molecular Diversity en_US
dc.subject Monkeypox virus (MPXV) en_US
dc.subject Drug discovery en_US
dc.subject Hypothetical protein (HP) en_US
dc.subject Homology modeling en_US
dc.subject Molecular docking en_US
dc.subject Molecular dynamics simulations en_US
dc.title Functional characterization and structural prediction of hypothetical proteins in monkeypox virus and identification of potential inhibitors en_US
dc.type Article en_US


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