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Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment

Prostate cancer (PCa) is the most common malignancy found in men and the second leading cause of cancer-related death worldwide. Castration-resistant PCa (CRPC) is defined by PCa cells that stop responding to hormone therapy. Cytochrome P450 17α-hydroxylase/17,20-lyase (CYP17A1) plays a critical rol...

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Autores principales: Omoboyowa, Damilola A, Balogun, Toheeb A, Saibu, Oluwatosin A, Chukwudozie, Onyeka S, Alausa, Abdullahi, Olubode, Samuel O, Aborode, Abdullahi T, Batiha, Gaber E, Bodun, Damilola S, Musa, Sekinat O
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8824735/
https://www.ncbi.nlm.nih.gov/pubmed/35146123
http://dx.doi.org/10.1093/biomethods/bpab026
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author Omoboyowa, Damilola A
Balogun, Toheeb A
Saibu, Oluwatosin A
Chukwudozie, Onyeka S
Alausa, Abdullahi
Olubode, Samuel O
Aborode, Abdullahi T
Batiha, Gaber E
Bodun, Damilola S
Musa, Sekinat O
author_facet Omoboyowa, Damilola A
Balogun, Toheeb A
Saibu, Oluwatosin A
Chukwudozie, Onyeka S
Alausa, Abdullahi
Olubode, Samuel O
Aborode, Abdullahi T
Batiha, Gaber E
Bodun, Damilola S
Musa, Sekinat O
author_sort Omoboyowa, Damilola A
collection PubMed
description Prostate cancer (PCa) is the most common malignancy found in men and the second leading cause of cancer-related death worldwide. Castration-resistant PCa (CRPC) is defined by PCa cells that stop responding to hormone therapy. Cytochrome P450 17α-hydroxylase/17,20-lyase (CYP17A1) plays a critical role in the biosynthesis of androgens in humans. Androgen signaling cascade is a principal survival pathway for PCa cells and androgen-deprivation therapy (ADT) remains the key treatment for patients marked with locally advanced and metastatic PCa cells. Available synthetic drugs have been reported for toxicity, drug resistance, and decreasing efficacy. Thus, the design of novel selective inhibitors of CYP17A1 lyase would help circumvent associated side effects and improve pharmacological activities. Therefore, we employed structural bioinformatics techniques via molecular docking; molecular mechanics generalized born surface area (MM-GBSA), molecular dynamics (MD) simulation, and pharmacokinetic study to identify putative CYP17A1 lyase inhibitors. The results of the computational investigation showed that the Prunus dulcis compounds exhibited higher binding energy than the clinically approved abiraterone acetate. The stability of the ligand with the highest binding affinity (quercetin-3-o-rutinoside) was observed during MD simulation for 10 ns. Quercetin-3-o-rutinoside was observed to be stable within the active site of CYP17A1Lyase throughout the simulation period. The result of the pharmacokinetic study revealed that these compounds are promising therapeutic agents. Collectively, this study proposed that bioactive compounds from P. dulcis may be potential selective inhibitors of CYP17A1Lyase in CRPC treatments.
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spelling pubmed-88247352022-02-09 Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment Omoboyowa, Damilola A Balogun, Toheeb A Saibu, Oluwatosin A Chukwudozie, Onyeka S Alausa, Abdullahi Olubode, Samuel O Aborode, Abdullahi T Batiha, Gaber E Bodun, Damilola S Musa, Sekinat O Biol Methods Protoc Methods Article Prostate cancer (PCa) is the most common malignancy found in men and the second leading cause of cancer-related death worldwide. Castration-resistant PCa (CRPC) is defined by PCa cells that stop responding to hormone therapy. Cytochrome P450 17α-hydroxylase/17,20-lyase (CYP17A1) plays a critical role in the biosynthesis of androgens in humans. Androgen signaling cascade is a principal survival pathway for PCa cells and androgen-deprivation therapy (ADT) remains the key treatment for patients marked with locally advanced and metastatic PCa cells. Available synthetic drugs have been reported for toxicity, drug resistance, and decreasing efficacy. Thus, the design of novel selective inhibitors of CYP17A1 lyase would help circumvent associated side effects and improve pharmacological activities. Therefore, we employed structural bioinformatics techniques via molecular docking; molecular mechanics generalized born surface area (MM-GBSA), molecular dynamics (MD) simulation, and pharmacokinetic study to identify putative CYP17A1 lyase inhibitors. The results of the computational investigation showed that the Prunus dulcis compounds exhibited higher binding energy than the clinically approved abiraterone acetate. The stability of the ligand with the highest binding affinity (quercetin-3-o-rutinoside) was observed during MD simulation for 10 ns. Quercetin-3-o-rutinoside was observed to be stable within the active site of CYP17A1Lyase throughout the simulation period. The result of the pharmacokinetic study revealed that these compounds are promising therapeutic agents. Collectively, this study proposed that bioactive compounds from P. dulcis may be potential selective inhibitors of CYP17A1Lyase in CRPC treatments. Oxford University Press 2021-12-25 /pmc/articles/PMC8824735/ /pubmed/35146123 http://dx.doi.org/10.1093/biomethods/bpab026 Text en © The Author(s) 2021. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methods Article
Omoboyowa, Damilola A
Balogun, Toheeb A
Saibu, Oluwatosin A
Chukwudozie, Onyeka S
Alausa, Abdullahi
Olubode, Samuel O
Aborode, Abdullahi T
Batiha, Gaber E
Bodun, Damilola S
Musa, Sekinat O
Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment
title Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment
title_full Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment
title_fullStr Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment
title_full_unstemmed Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment
title_short Structure-based discovery of selective CYP(17)A(1) inhibitors for Castration-resistant prostate cancer treatment
title_sort structure-based discovery of selective cyp(17)a(1) inhibitors for castration-resistant prostate cancer treatment
topic Methods Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8824735/
https://www.ncbi.nlm.nih.gov/pubmed/35146123
http://dx.doi.org/10.1093/biomethods/bpab026
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