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Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors

[Image: see text] A series of 32 thiourea-based urease inhibitors were synthesized and evaluated against native bacterial enzyme and whole cells of Sporosarcina pasteurii and Proteus mirabilis strains. The proposed inhibitors represented structurally diverse thiosemicarbazones and thiocarbohydrazone...

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Autores principales: Tabor, Wojciech, Katsogiannou, Aikaterini, Karta, Danai, Andrianopoulou, Evgenia, Berlicki, Łukasz, Vassiliou, Stamatia, Grabowiecka, Agnieszka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10413841/
https://www.ncbi.nlm.nih.gov/pubmed/37576686
http://dx.doi.org/10.1021/acsomega.3c03702
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author Tabor, Wojciech
Katsogiannou, Aikaterini
Karta, Danai
Andrianopoulou, Evgenia
Berlicki, Łukasz
Vassiliou, Stamatia
Grabowiecka, Agnieszka
author_facet Tabor, Wojciech
Katsogiannou, Aikaterini
Karta, Danai
Andrianopoulou, Evgenia
Berlicki, Łukasz
Vassiliou, Stamatia
Grabowiecka, Agnieszka
author_sort Tabor, Wojciech
collection PubMed
description [Image: see text] A series of 32 thiourea-based urease inhibitors were synthesized and evaluated against native bacterial enzyme and whole cells of Sporosarcina pasteurii and Proteus mirabilis strains. The proposed inhibitors represented structurally diverse thiosemicarbazones and thiocarbohydrazones, benzyl-substituted thiazolyl thioureas, 1H-pyrazole-1-carbothioamides, and dihydropirimidine-2(1H)-thiones. Kinetic characteristics with purified S. pasteurii enzyme determined low micromolar inhibitors within each structural group. (E)-2-(1-Phenylethylidene)hydrazine-1-carbothioamide 19 (K(i) = 0.39 ± 0.01 μM), (E)-2-(4-methylbenzylidene)hydrazine-1-carbothioamide 16 (K(i) = 0.99 ± 0.04 μM), and N′-((1E,2E)-1,3-diphenylallylidene)hydrazinecarbothiohydrazide 29 (K(i) = 2.23 ± 0.19 μM) were used in modeling studies that revealed sulfur ion coordination of the active site nickel ion and hydrogen bonds between the amide group and the side chain of Asp363 and Ala366 carbonyl moiety. Whole-cell studies proved the activity of compounds in Gram-positive and Gram-negative microorganisms. Ureolysis control observed in P. mirabilis PCM 543 (e.g., IC(50) = 304 ± 14 μM for 1-benzyl-3-(4-(4-hydroxyphenyl)thiazol-2-yl)thiourea 52) is a valuable achievement, as urease is recognized as a major virulence factor of this urinary tract pathogen.
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spelling pubmed-104138412023-08-11 Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors Tabor, Wojciech Katsogiannou, Aikaterini Karta, Danai Andrianopoulou, Evgenia Berlicki, Łukasz Vassiliou, Stamatia Grabowiecka, Agnieszka ACS Omega [Image: see text] A series of 32 thiourea-based urease inhibitors were synthesized and evaluated against native bacterial enzyme and whole cells of Sporosarcina pasteurii and Proteus mirabilis strains. The proposed inhibitors represented structurally diverse thiosemicarbazones and thiocarbohydrazones, benzyl-substituted thiazolyl thioureas, 1H-pyrazole-1-carbothioamides, and dihydropirimidine-2(1H)-thiones. Kinetic characteristics with purified S. pasteurii enzyme determined low micromolar inhibitors within each structural group. (E)-2-(1-Phenylethylidene)hydrazine-1-carbothioamide 19 (K(i) = 0.39 ± 0.01 μM), (E)-2-(4-methylbenzylidene)hydrazine-1-carbothioamide 16 (K(i) = 0.99 ± 0.04 μM), and N′-((1E,2E)-1,3-diphenylallylidene)hydrazinecarbothiohydrazide 29 (K(i) = 2.23 ± 0.19 μM) were used in modeling studies that revealed sulfur ion coordination of the active site nickel ion and hydrogen bonds between the amide group and the side chain of Asp363 and Ala366 carbonyl moiety. Whole-cell studies proved the activity of compounds in Gram-positive and Gram-negative microorganisms. Ureolysis control observed in P. mirabilis PCM 543 (e.g., IC(50) = 304 ± 14 μM for 1-benzyl-3-(4-(4-hydroxyphenyl)thiazol-2-yl)thiourea 52) is a valuable achievement, as urease is recognized as a major virulence factor of this urinary tract pathogen. American Chemical Society 2023-07-28 /pmc/articles/PMC10413841/ /pubmed/37576686 http://dx.doi.org/10.1021/acsomega.3c03702 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Tabor, Wojciech
Katsogiannou, Aikaterini
Karta, Danai
Andrianopoulou, Evgenia
Berlicki, Łukasz
Vassiliou, Stamatia
Grabowiecka, Agnieszka
Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors
title Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors
title_full Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors
title_fullStr Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors
title_full_unstemmed Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors
title_short Exploration of Thiourea-Based Scaffolds for the Construction of Bacterial Ureases Inhibitors
title_sort exploration of thiourea-based scaffolds for the construction of bacterial ureases inhibitors
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10413841/
https://www.ncbi.nlm.nih.gov/pubmed/37576686
http://dx.doi.org/10.1021/acsomega.3c03702
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