N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies

DNA double strand-breaks (DSBs) are the most deleterious lesions that can affect the genome of living beings and are lethal if not quickly and properly repaired. Recently, N-phenyl ureidobenzenesulfonates (PUB-SOs) as tubulin inhibitors that are blocking the cells cycle progression in S-phase and in...

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Main Authors: Masood Fereidoonnezhad, Azar Mostoufi, Fariba Aliyan
Format: Article
Language:English
Published: Shiraz University of Medical Sciences 2017-06-01
Series:Trends in Pharmaceutical Sciences
Subjects:
Online Access:https://tips.sums.ac.ir/article_42223_cf91fffa662a36654a3d3e7737405753.pdf
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author Masood Fereidoonnezhad
Azar Mostoufi
Fariba Aliyan
author_facet Masood Fereidoonnezhad
Azar Mostoufi
Fariba Aliyan
author_sort Masood Fereidoonnezhad
collection DOAJ
description DNA double strand-breaks (DSBs) are the most deleterious lesions that can affect the genome of living beings and are lethal if not quickly and properly repaired. Recently, N-phenyl ureidobenzenesulfonates (PUB-SOs) as tubulin inhibitors that are blocking the cells cycle progression in S-phase and inducing DNA DSBs is discovered. Here, a set of PUB-SOs derivatives were applied to quantitative structural activity relationship (QSAR) analysis. A series of chemometrics methods like MLR, FA- MLR, PCR and partial least squared included in variable selection genetic algorithm (GA-PLS) were used for relations between structural features of these compounds and their anti-proliferative activity against MCF-7 cell line. New potent lead compounds were also designed based on new structural patterns using in silico-screening study. Molecular docking studies of these compounds on DNA and tubulin were conducted. The results obtained from validated docking protocol indicate that the important amino acids inside the active site cavity that are in charge of essential interactions with tubulin are Ala30, Lys B254, Asn B258, Met B259, Asn A101, Glu A183, Thr A179, Leu B255, Ser A178 and Gln B247. And the most important base pairs inside the minor groove of DNA being responsible for essential interclation with DNA are G2, G4, G10, G12, A5, A6, C9 and C11 base pairs.
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spelling doaj.art-794a9f7c392c4e65bbf3393fbc06d6672022-12-21T18:48:32ZengShiraz University of Medical SciencesTrends in Pharmaceutical Sciences2423-56522017-06-01328310442223N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studiesMasood Fereidoonnezhad0Azar Mostoufi1Fariba Aliyan2Department of Medicinal Chemistry, School of Pharmacy, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.1 Department of Medicinal Chemistry, School of Pharmacy, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran. 2 Research Center of Marine Pharmaceutical Science, Ahvaz Jundishahpour University of Medical Science, P.O. Code 61357-73135, IranDepartment of Medicinal Chemistry, School of Pharmacy, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.DNA double strand-breaks (DSBs) are the most deleterious lesions that can affect the genome of living beings and are lethal if not quickly and properly repaired. Recently, N-phenyl ureidobenzenesulfonates (PUB-SOs) as tubulin inhibitors that are blocking the cells cycle progression in S-phase and inducing DNA DSBs is discovered. Here, a set of PUB-SOs derivatives were applied to quantitative structural activity relationship (QSAR) analysis. A series of chemometrics methods like MLR, FA- MLR, PCR and partial least squared included in variable selection genetic algorithm (GA-PLS) were used for relations between structural features of these compounds and their anti-proliferative activity against MCF-7 cell line. New potent lead compounds were also designed based on new structural patterns using in silico-screening study. Molecular docking studies of these compounds on DNA and tubulin were conducted. The results obtained from validated docking protocol indicate that the important amino acids inside the active site cavity that are in charge of essential interactions with tubulin are Ala30, Lys B254, Asn B258, Met B259, Asn A101, Glu A183, Thr A179, Leu B255, Ser A178 and Gln B247. And the most important base pairs inside the minor groove of DNA being responsible for essential interclation with DNA are G2, G4, G10, G12, A5, A6, C9 and C11 base pairs.https://tips.sums.ac.ir/article_42223_cf91fffa662a36654a3d3e7737405753.pdfqsarmolecular dockingn-phenyl ureidobenzenesulfonatesin silico-screening
spellingShingle Masood Fereidoonnezhad
Azar Mostoufi
Fariba Aliyan
N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies
Trends in Pharmaceutical Sciences
qsar
molecular docking
n-phenyl ureidobenzenesulfonates
in silico-screening
title N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies
title_full N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies
title_fullStr N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies
title_full_unstemmed N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies
title_short N-Phenyl Ureidobenzenesulfonate derivatives as novel anticancer agents: QSAR and Molecular docking studies
title_sort n phenyl ureidobenzenesulfonate derivatives as novel anticancer agents qsar and molecular docking studies
topic qsar
molecular docking
n-phenyl ureidobenzenesulfonates
in silico-screening
url https://tips.sums.ac.ir/article_42223_cf91fffa662a36654a3d3e7737405753.pdf
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AT faribaaliyan nphenylureidobenzenesulfonatederivativesasnovelanticanceragentsqsarandmoleculardockingstudies