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Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors

A series of halo-substituted mixed ester/amide-based analogues 4a-l have been prepared as jack bean urease inhibitor, which showed good to excellent inhibition of enzyme activity. The role of halo-substituted benzoyl moieties and alkyl substituted anilines in urease inhibitory kinetics was also inve...

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Autores principales: Rashid, Muhammad, Rafique, Hummera, Roshan, Sadia, Shamas, Shazia, Iqbal, Zafar, Ashraf, Zaman, Abbas, Qamar, Hassan, Mubashir, Qureshi, Zia Ur Rahman, Asad, Muhammad Hassham Hassan Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7775144/
https://www.ncbi.nlm.nih.gov/pubmed/33426080
http://dx.doi.org/10.1155/2020/8867407
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author Rashid, Muhammad
Rafique, Hummera
Roshan, Sadia
Shamas, Shazia
Iqbal, Zafar
Ashraf, Zaman
Abbas, Qamar
Hassan, Mubashir
Qureshi, Zia Ur Rahman
Asad, Muhammad Hassham Hassan Bin
author_facet Rashid, Muhammad
Rafique, Hummera
Roshan, Sadia
Shamas, Shazia
Iqbal, Zafar
Ashraf, Zaman
Abbas, Qamar
Hassan, Mubashir
Qureshi, Zia Ur Rahman
Asad, Muhammad Hassham Hassan Bin
author_sort Rashid, Muhammad
collection PubMed
description A series of halo-substituted mixed ester/amide-based analogues 4a-l have been prepared as jack bean urease inhibitor, which showed good to excellent inhibition of enzyme activity. The role of halo-substituted benzoyl moieties and alkyl substituted anilines in urease inhibitory kinetics was also investigated. The alkyl-substituted anilines 1a–b reacted with chloroacetyl chloride to afford intermediates 2a-b, which were then reacted with different halo-substituted benzoic acids 3a–f to prepare the title compounds 4a-l. The chemical structures of final products 4a-l were ascertained by FTIR, (1)H NMR, (13)C NMR, and mass spectra. The compound 4b showed remarkable activity with IC(50)1.6 ± 0.2 nM, better than the standard thiourea having IC(50)472.1 ± 135.1 nM. The 2-chloro-substituted phenyl ring on one side of compound 4b and 4-isopropyl-substituted benzene on the other side play an essential role in inhibition of urease activity. Lineweaver–Burk plots (kinetics study) indicated about 4b derivative as a mixed type of inhibitor. The virtual screening performed against urease enzyme (PDBID 4H9M) showed that compounds 4b and 4e have binding energies of −7.8 and −7.9 Kcal/mol, respectively. Based upon our results, it was found that derivative 4b is a highly potent urease inhibitor, better than the standard thiourea.
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spelling pubmed-77751442021-01-07 Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors Rashid, Muhammad Rafique, Hummera Roshan, Sadia Shamas, Shazia Iqbal, Zafar Ashraf, Zaman Abbas, Qamar Hassan, Mubashir Qureshi, Zia Ur Rahman Asad, Muhammad Hassham Hassan Bin Biomed Res Int Research Article A series of halo-substituted mixed ester/amide-based analogues 4a-l have been prepared as jack bean urease inhibitor, which showed good to excellent inhibition of enzyme activity. The role of halo-substituted benzoyl moieties and alkyl substituted anilines in urease inhibitory kinetics was also investigated. The alkyl-substituted anilines 1a–b reacted with chloroacetyl chloride to afford intermediates 2a-b, which were then reacted with different halo-substituted benzoic acids 3a–f to prepare the title compounds 4a-l. The chemical structures of final products 4a-l were ascertained by FTIR, (1)H NMR, (13)C NMR, and mass spectra. The compound 4b showed remarkable activity with IC(50)1.6 ± 0.2 nM, better than the standard thiourea having IC(50)472.1 ± 135.1 nM. The 2-chloro-substituted phenyl ring on one side of compound 4b and 4-isopropyl-substituted benzene on the other side play an essential role in inhibition of urease activity. Lineweaver–Burk plots (kinetics study) indicated about 4b derivative as a mixed type of inhibitor. The virtual screening performed against urease enzyme (PDBID 4H9M) showed that compounds 4b and 4e have binding energies of −7.8 and −7.9 Kcal/mol, respectively. Based upon our results, it was found that derivative 4b is a highly potent urease inhibitor, better than the standard thiourea. Hindawi 2020-12-24 /pmc/articles/PMC7775144/ /pubmed/33426080 http://dx.doi.org/10.1155/2020/8867407 Text en Copyright © 2020 Muhammad Rashid et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Rashid, Muhammad
Rafique, Hummera
Roshan, Sadia
Shamas, Shazia
Iqbal, Zafar
Ashraf, Zaman
Abbas, Qamar
Hassan, Mubashir
Qureshi, Zia Ur Rahman
Asad, Muhammad Hassham Hassan Bin
Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors
title Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors
title_full Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors
title_fullStr Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors
title_full_unstemmed Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors
title_short Enzyme Inhibitory Kinetics and Molecular Docking Studies of Halo-Substituted Mixed Ester/Amide-Based Derivatives as Jack Bean Urease Inhibitors
title_sort enzyme inhibitory kinetics and molecular docking studies of halo-substituted mixed ester/amide-based derivatives as jack bean urease inhibitors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7775144/
https://www.ncbi.nlm.nih.gov/pubmed/33426080
http://dx.doi.org/10.1155/2020/8867407
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