Application of temperature-dependent and steered molecular dynamics simulation to screen anti-dengue compounds against Marburg virus
收藏Taylor & Francis Group2025-06-01 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Application_of_temperature-dependent_and_steered_molecular_dynamics_simulation_to_screen_anti-dengue_compounds_against_Marburg_virus/25018126/1
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Marburg virus infections are extremely fatal with a fatality range of 23% to 90%, therefore there is an urgent requirement to design and develop efficient therapeutic molecules. Here, a comprehensive temperature-dependent molecular dynamics (MD) simulation method was implemented to identify the potential molecule from the anti-dengue compound library that can inhibit the function of the VP24 protein of Marburg. Virtual high throughput screening identified five effective binders of VP24 after screening 484 anti-dengue compounds. These compounds were treated in MD simulation at four different temperatures: 300, 340, 380, and 420 K. Higher temperatures showed dissociation of hit compounds from the protein. Further, triplicates of 100 ns MD simulation were conducted which showed that compounds ID = <b>118717693</b>, and ID = <b>5361</b> showed strong stability with the protein molecule. These compounds were further validated using ΔG binding free energies and they showed: −30.38 kcal/mol, and −67.83 kcal/mol binding free energies, respectively. Later, these two compounds were used in steered MD simulation to detect its dissociation. Compound ID = <b>5361</b> showed the maximum pulling force of 199.02 kcal/mol/nm to dissociate the protein-ligand complex while ID = <b>118717693</b> had a pulling force of 101.11 kcal/mol/nm, respectively. This ligand highest number of hydrogen bonds with varying occupancies at 89.93%, 69.80%, 57.93%, 52.33%, and 50.63%. This study showed that ID = <b>5361</b> can bind with the VP24 strongly and has the potential to inhibit its function which can be validated in the in-vitro experiment.
提供机构:
Alhajri, Mashael; Al-Subaie, Maha F.; Almansour, Zainab H.; Halwani, Muhammad A.; Alqahtani, Ali S.; Nahari, Mohammed H.; Al bshabshe, Ali; Alshamrani, Saleh A.; Rabaan, Ali A.; Al Kaabi, Nawal A.; Alissa, Mohammed; Alshehri, Ahmad A.
创建时间:
2024-01-18



