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Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies

This article describes the design and synthesis of a series of novel amantadine-thiourea conjugates (3a–j) as Jack bean urease inhibitors. The synthesized hybrids were assayed for their in vitro urease inhibition. Accordingly, N-(adamantan-1-ylcarbamothioyl)octanamide (3j) possessing a 7-carbon alky...

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Autores principales: Ahmed, Atteeque, Saeed, Aamer, Ali, Omar M., El-Bahy, Zeinhom M., Channar, Pervaiz Ali, Khurshid, Asma, Tehzeeb, Arfa, Ashraf, Zaman, Raza, Hussain, Ul-Hamid, Anwar, Hassan, Mubashir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658948/
https://www.ncbi.nlm.nih.gov/pubmed/34885728
http://dx.doi.org/10.3390/molecules26237150
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author Ahmed, Atteeque
Saeed, Aamer
Ali, Omar M.
El-Bahy, Zeinhom M.
Channar, Pervaiz Ali
Khurshid, Asma
Tehzeeb, Arfa
Ashraf, Zaman
Raza, Hussain
Ul-Hamid, Anwar
Hassan, Mubashir
author_facet Ahmed, Atteeque
Saeed, Aamer
Ali, Omar M.
El-Bahy, Zeinhom M.
Channar, Pervaiz Ali
Khurshid, Asma
Tehzeeb, Arfa
Ashraf, Zaman
Raza, Hussain
Ul-Hamid, Anwar
Hassan, Mubashir
author_sort Ahmed, Atteeque
collection PubMed
description This article describes the design and synthesis of a series of novel amantadine-thiourea conjugates (3a–j) as Jack bean urease inhibitors. The synthesized hybrids were assayed for their in vitro urease inhibition. Accordingly, N-(adamantan-1-ylcarbamothioyl)octanamide (3j) possessing a 7-carbon alkyl chain showed excellent activity with IC(50) value 0.0085 ± 0.0011 µM indicating that the long alkyl chain plays a vital role in enzyme inhibition. Whilst N-(adamantan-1-ylcarbamothioyl)-2-chlorobenzamide (3g) possessing a 2-chlorophenyl substitution was the next most efficient compound belonging to the aryl series with IC(50) value of 0.0087 ± 0.001 µM. The kinetic mechanism analyzed by Lineweaver–Burk plots revealed the non-competitive mode of inhibition for compound 3j. Moreover, in silico molecular docking against target protein (PDBID 4H9M) indicated that most of the synthesized compounds exhibit good binding affinity with protein. The compound 3j forms two hydrogen bonds with amino acid residue VAL391 having a binding distance of 1.858 Å and 2.240 Å. The interaction of 3j with amino acid residue located outside the catalytic site showed its non-competitive mode of inhibition. Based upon these results, it is anticipated that compound 3j may serve as a lead structure for the design of more potent urease inhibitors.
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spelling pubmed-86589482021-12-10 Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies Ahmed, Atteeque Saeed, Aamer Ali, Omar M. El-Bahy, Zeinhom M. Channar, Pervaiz Ali Khurshid, Asma Tehzeeb, Arfa Ashraf, Zaman Raza, Hussain Ul-Hamid, Anwar Hassan, Mubashir Molecules Article This article describes the design and synthesis of a series of novel amantadine-thiourea conjugates (3a–j) as Jack bean urease inhibitors. The synthesized hybrids were assayed for their in vitro urease inhibition. Accordingly, N-(adamantan-1-ylcarbamothioyl)octanamide (3j) possessing a 7-carbon alkyl chain showed excellent activity with IC(50) value 0.0085 ± 0.0011 µM indicating that the long alkyl chain plays a vital role in enzyme inhibition. Whilst N-(adamantan-1-ylcarbamothioyl)-2-chlorobenzamide (3g) possessing a 2-chlorophenyl substitution was the next most efficient compound belonging to the aryl series with IC(50) value of 0.0087 ± 0.001 µM. The kinetic mechanism analyzed by Lineweaver–Burk plots revealed the non-competitive mode of inhibition for compound 3j. Moreover, in silico molecular docking against target protein (PDBID 4H9M) indicated that most of the synthesized compounds exhibit good binding affinity with protein. The compound 3j forms two hydrogen bonds with amino acid residue VAL391 having a binding distance of 1.858 Å and 2.240 Å. The interaction of 3j with amino acid residue located outside the catalytic site showed its non-competitive mode of inhibition. Based upon these results, it is anticipated that compound 3j may serve as a lead structure for the design of more potent urease inhibitors. MDPI 2021-11-25 /pmc/articles/PMC8658948/ /pubmed/34885728 http://dx.doi.org/10.3390/molecules26237150 Text en © 2021 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
Ahmed, Atteeque
Saeed, Aamer
Ali, Omar M.
El-Bahy, Zeinhom M.
Channar, Pervaiz Ali
Khurshid, Asma
Tehzeeb, Arfa
Ashraf, Zaman
Raza, Hussain
Ul-Hamid, Anwar
Hassan, Mubashir
Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies
title Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies
title_full Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies
title_fullStr Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies
title_full_unstemmed Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies
title_short Exploring Amantadine Derivatives as Urease Inhibitors: Molecular Docking and Structure–Activity Relationship (SAR) Studies
title_sort exploring amantadine derivatives as urease inhibitors: molecular docking and structure–activity relationship (sar) studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658948/
https://www.ncbi.nlm.nih.gov/pubmed/34885728
http://dx.doi.org/10.3390/molecules26237150
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