Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation

Usnic acid (UA) lately piqued the interest of researchers for its extraordinary biological characteristics, including anticancer activity. Here, the mechanism was clarified through network pharmacology,molecular docking and molecular dynamic simulation. Sixteen proteins were selected through network...

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Main Authors: Wong, K. K. V., Roney, Miah, Uddin, Nazim, Imran, Syahrul, Gazali, Ahmad Mahfuz, Zamri, Normaiza, Rullah, Kamal, Mohd Aluwi, Mohd F. F.
Format: Article
Language:English
English
Published: Taylor & Francis 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/37543/
http://umpir.ump.edu.my/id/eprint/37543/1/Usnic%20acid%20as%20potential%20inhibitors%20of%20BCL2%20and%20P13K%20protein%20.pdf
http://umpir.ump.edu.my/id/eprint/37543/2/Usnic%20acid%20as%20potential%20inhibitors%20of%20BCL2%20and%20P13K%20protein_FULL.pdf
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author Wong, K. K. V.
Roney, Miah
Uddin, Nazim
Imran, Syahrul
Gazali, Ahmad Mahfuz
Zamri, Normaiza
Rullah, Kamal
Mohd Aluwi, Mohd F. F.
author_facet Wong, K. K. V.
Roney, Miah
Uddin, Nazim
Imran, Syahrul
Gazali, Ahmad Mahfuz
Zamri, Normaiza
Rullah, Kamal
Mohd Aluwi, Mohd F. F.
author_sort Wong, K. K. V.
building UMP Institutional Repository
collection Online Access
description Usnic acid (UA) lately piqued the interest of researchers for its extraordinary biological characteristics, including anticancer activity. Here, the mechanism was clarified through network pharmacology,molecular docking and molecular dynamic simulation. Sixteen proteins were selected through network pharmacology study as they are probable to interact with UA. Out of these proteins, 13 were filtered from PPI network analysis based on their significance of interactions (p < 0.05). KEGG pathway analysis has also aided us in determining the three most significant protein targets for UA, which are BCL2, PI3KCA and PI3KCG. Therefore molecular docking and molecular dynamic (MD) simulations throughout 100 ns were performed for usnic acid onto the three proteins mentioned. However, UA's docking score in all proteins is lower than their co-crystalised ligand, especially for BCL2 (−36.5158 kcal/mol) and PI3KCA (−44.5995 kcal/mol) proteins. The only exception is PI3KCG which has comparable results with the co-crystallised ligand with (−41.9351 kcal/mol). Furthermore, MD simulation has also revealed that usnic acid does not stay fit in the protein throughout the simulation trajectory for PI3KCA protein evident from RMSF and RMSD plots. Nevertheless, it still poses good ability in inhibiting BCL2 and PI3KCG protein in MD simulation. In the end, usnic acid has exhibited good potential in the inhibition of PI3KCG proteins, rather than the other proteins mentioned. Thus further study on structural modification of usnic acid could enhance the ability of usnic acid in the inhibition of PI3KCG as anti-colorectal and anti-small cell lung cancer drug candidate.
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spelling ump-375432024-07-03T01:57:52Z http://umpir.ump.edu.my/id/eprint/37543/ Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation Wong, K. K. V. Roney, Miah Uddin, Nazim Imran, Syahrul Gazali, Ahmad Mahfuz Zamri, Normaiza Rullah, Kamal Mohd Aluwi, Mohd F. F. RM Therapeutics. Pharmacology Usnic acid (UA) lately piqued the interest of researchers for its extraordinary biological characteristics, including anticancer activity. Here, the mechanism was clarified through network pharmacology,molecular docking and molecular dynamic simulation. Sixteen proteins were selected through network pharmacology study as they are probable to interact with UA. Out of these proteins, 13 were filtered from PPI network analysis based on their significance of interactions (p < 0.05). KEGG pathway analysis has also aided us in determining the three most significant protein targets for UA, which are BCL2, PI3KCA and PI3KCG. Therefore molecular docking and molecular dynamic (MD) simulations throughout 100 ns were performed for usnic acid onto the three proteins mentioned. However, UA's docking score in all proteins is lower than their co-crystalised ligand, especially for BCL2 (−36.5158 kcal/mol) and PI3KCA (−44.5995 kcal/mol) proteins. The only exception is PI3KCG which has comparable results with the co-crystallised ligand with (−41.9351 kcal/mol). Furthermore, MD simulation has also revealed that usnic acid does not stay fit in the protein throughout the simulation trajectory for PI3KCA protein evident from RMSF and RMSD plots. Nevertheless, it still poses good ability in inhibiting BCL2 and PI3KCG protein in MD simulation. In the end, usnic acid has exhibited good potential in the inhibition of PI3KCG proteins, rather than the other proteins mentioned. Thus further study on structural modification of usnic acid could enhance the ability of usnic acid in the inhibition of PI3KCG as anti-colorectal and anti-small cell lung cancer drug candidate. Taylor & Francis 2023-02 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/37543/1/Usnic%20acid%20as%20potential%20inhibitors%20of%20BCL2%20and%20P13K%20protein%20.pdf pdf en http://umpir.ump.edu.my/id/eprint/37543/2/Usnic%20acid%20as%20potential%20inhibitors%20of%20BCL2%20and%20P13K%20protein_FULL.pdf Wong, K. K. V. and Roney, Miah and Uddin, Nazim and Imran, Syahrul and Gazali, Ahmad Mahfuz and Zamri, Normaiza and Rullah, Kamal and Mohd Aluwi, Mohd F. F. (2023) Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation. Journal of Biomolecular Structure and Dynamics, 41 (23). pp. 13632-13645. ISSN 0739-1102. (Published) https://doi.org/10.1080/07391102.2023.2178506 https://doi.org/10.1080/07391102.2023.2178506
spellingShingle RM Therapeutics. Pharmacology
Wong, K. K. V.
Roney, Miah
Uddin, Nazim
Imran, Syahrul
Gazali, Ahmad Mahfuz
Zamri, Normaiza
Rullah, Kamal
Mohd Aluwi, Mohd F. F.
Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
title Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
title_full Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
title_fullStr Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
title_full_unstemmed Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
title_short Usnic acid as potential inhibitors of BCL2 and P13K protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
title_sort usnic acid as potential inhibitors of bcl2 and p13k protein through network pharmacology-based analysis, molecular docking and molecular dynamic simulation
topic RM Therapeutics. Pharmacology
url http://umpir.ump.edu.my/id/eprint/37543/
http://umpir.ump.edu.my/id/eprint/37543/
http://umpir.ump.edu.my/id/eprint/37543/
http://umpir.ump.edu.my/id/eprint/37543/1/Usnic%20acid%20as%20potential%20inhibitors%20of%20BCL2%20and%20P13K%20protein%20.pdf
http://umpir.ump.edu.my/id/eprint/37543/2/Usnic%20acid%20as%20potential%20inhibitors%20of%20BCL2%20and%20P13K%20protein_FULL.pdf