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In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study

Multidrug resistance (MDR) is one of the most problematic issues in chemotherapeutic carcinoma therapy. The ABCB1 transporter, a drug efflux pump overexpressed in cancer cells, has been thoroughly investigated for its association with MDR. Thus, discovering ABCB1 inhibitors can reverse the MDR in ca...

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Autores principales: Ibrahim, Mahmoud A. A., Abdeljawaad, Khlood A. A., Abdelrahman, Alaa H. M., Sidhom, Peter A., Tawfeek, Ahmed M., Mekhemer, Gamal A. H., Abd El-Rahman, Mohamed K., Dabbish, Eslam, Shoeib, Tamer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384459/
https://www.ncbi.nlm.nih.gov/pubmed/37513931
http://dx.doi.org/10.3390/ph16071019
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author Ibrahim, Mahmoud A. A.
Abdeljawaad, Khlood A. A.
Abdelrahman, Alaa H. M.
Sidhom, Peter A.
Tawfeek, Ahmed M.
Mekhemer, Gamal A. H.
Abd El-Rahman, Mohamed K.
Dabbish, Eslam
Shoeib, Tamer
author_facet Ibrahim, Mahmoud A. A.
Abdeljawaad, Khlood A. A.
Abdelrahman, Alaa H. M.
Sidhom, Peter A.
Tawfeek, Ahmed M.
Mekhemer, Gamal A. H.
Abd El-Rahman, Mohamed K.
Dabbish, Eslam
Shoeib, Tamer
author_sort Ibrahim, Mahmoud A. A.
collection PubMed
description Multidrug resistance (MDR) is one of the most problematic issues in chemotherapeutic carcinoma therapy. The ABCB1 transporter, a drug efflux pump overexpressed in cancer cells, has been thoroughly investigated for its association with MDR. Thus, discovering ABCB1 inhibitors can reverse the MDR in cancer cells. In the current work, a molecular docking technique was utilized for hunting the most prospective ABCB1 inhibitors from the Toxin and Toxin-Target Database (T3DB). Based on the docking computations, the most promising T3DB compounds complexed with the ABCB1 transporter were subjected to molecular dynamics (MD) simulations over 100 ns. Utilizing the MM-GBSA approach, the corresponding binding affinities were computed. Compared to ZQU (calc. −49.8 kcal/mol), Emamectin B1a (T3D1043), Emamectin B1b (T3D1044), Vincristine (T3D4016), Vinblastine (T3D4017), and Vindesine (T3D2479) complexed with ABCB1 transporter demonstrated outstanding binding affinities with ΔG(binding) values of −93.0, −92.6, −93.8, −92.2, and −90.8 kcal/mol, respectively. The structural and energetic investigations confirmed the constancy of the identified T3DB compounds complexed with the ABCB1 transporter during the 100 ns MD course. To mimic the physiological conditions, MD simulations were conducted for those identified inhibitors complexed with ABCB1 transporter in the presence of a POPC membrane. These findings revealed that Emamectin B1a, Emamectin B1b, Vincristine, Vinblastine, and Vindesine are promising ABCB1 inhibitors that can reverse the MDR. Therefore, subjecting those compounds to further in-vitro and in-vivo investigations is worthwhile.
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spelling pubmed-103844592023-07-30 In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study Ibrahim, Mahmoud A. A. Abdeljawaad, Khlood A. A. Abdelrahman, Alaa H. M. Sidhom, Peter A. Tawfeek, Ahmed M. Mekhemer, Gamal A. H. Abd El-Rahman, Mohamed K. Dabbish, Eslam Shoeib, Tamer Pharmaceuticals (Basel) Article Multidrug resistance (MDR) is one of the most problematic issues in chemotherapeutic carcinoma therapy. The ABCB1 transporter, a drug efflux pump overexpressed in cancer cells, has been thoroughly investigated for its association with MDR. Thus, discovering ABCB1 inhibitors can reverse the MDR in cancer cells. In the current work, a molecular docking technique was utilized for hunting the most prospective ABCB1 inhibitors from the Toxin and Toxin-Target Database (T3DB). Based on the docking computations, the most promising T3DB compounds complexed with the ABCB1 transporter were subjected to molecular dynamics (MD) simulations over 100 ns. Utilizing the MM-GBSA approach, the corresponding binding affinities were computed. Compared to ZQU (calc. −49.8 kcal/mol), Emamectin B1a (T3D1043), Emamectin B1b (T3D1044), Vincristine (T3D4016), Vinblastine (T3D4017), and Vindesine (T3D2479) complexed with ABCB1 transporter demonstrated outstanding binding affinities with ΔG(binding) values of −93.0, −92.6, −93.8, −92.2, and −90.8 kcal/mol, respectively. The structural and energetic investigations confirmed the constancy of the identified T3DB compounds complexed with the ABCB1 transporter during the 100 ns MD course. To mimic the physiological conditions, MD simulations were conducted for those identified inhibitors complexed with ABCB1 transporter in the presence of a POPC membrane. These findings revealed that Emamectin B1a, Emamectin B1b, Vincristine, Vinblastine, and Vindesine are promising ABCB1 inhibitors that can reverse the MDR. Therefore, subjecting those compounds to further in-vitro and in-vivo investigations is worthwhile. MDPI 2023-07-18 /pmc/articles/PMC10384459/ /pubmed/37513931 http://dx.doi.org/10.3390/ph16071019 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ibrahim, Mahmoud A. A.
Abdeljawaad, Khlood A. A.
Abdelrahman, Alaa H. M.
Sidhom, Peter A.
Tawfeek, Ahmed M.
Mekhemer, Gamal A. H.
Abd El-Rahman, Mohamed K.
Dabbish, Eslam
Shoeib, Tamer
In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study
title In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study
title_full In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study
title_fullStr In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study
title_full_unstemmed In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study
title_short In-Silico Mining of the Toxins Database (T3DB) towards Hunting Prospective Candidates as ABCB1 Inhibitors: Integrated Molecular Docking and Lipid Bilayer-Enhanced Molecular Dynamics Study
title_sort in-silico mining of the toxins database (t3db) towards hunting prospective candidates as abcb1 inhibitors: integrated molecular docking and lipid bilayer-enhanced molecular dynamics study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384459/
https://www.ncbi.nlm.nih.gov/pubmed/37513931
http://dx.doi.org/10.3390/ph16071019
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