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Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A

Staphylococcus aureus (S. aureus) is a causative agent of many hospital- and community-acquired infections with the tendency to develop resistance to all known antibiotics. Therefore, the development of novel antistaphylococcal agents is of urgent need. Sortase A is considered a promising molecular...

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Autores principales: Volynets, Galyna, Vyshniakova, Hanna, Nitulescu, Georgiana, Nitulescu, George Mihai, Ungurianu, Anca, Margina, Denisa, Moshynets, Olena, Bdzhola, Volodymyr, Koleiev, Ihor, Iungin, Olga, Tarnavskiy, Sergiy, Yarmoluk, Sergiy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658998/
https://www.ncbi.nlm.nih.gov/pubmed/34885677
http://dx.doi.org/10.3390/molecules26237095
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author Volynets, Galyna
Vyshniakova, Hanna
Nitulescu, Georgiana
Nitulescu, George Mihai
Ungurianu, Anca
Margina, Denisa
Moshynets, Olena
Bdzhola, Volodymyr
Koleiev, Ihor
Iungin, Olga
Tarnavskiy, Sergiy
Yarmoluk, Sergiy
author_facet Volynets, Galyna
Vyshniakova, Hanna
Nitulescu, Georgiana
Nitulescu, George Mihai
Ungurianu, Anca
Margina, Denisa
Moshynets, Olena
Bdzhola, Volodymyr
Koleiev, Ihor
Iungin, Olga
Tarnavskiy, Sergiy
Yarmoluk, Sergiy
author_sort Volynets, Galyna
collection PubMed
description Staphylococcus aureus (S. aureus) is a causative agent of many hospital- and community-acquired infections with the tendency to develop resistance to all known antibiotics. Therefore, the development of novel antistaphylococcal agents is of urgent need. Sortase A is considered a promising molecular target for the development of antistaphylococcal agents. The main aim of this study was to identify novel sortase A inhibitors. In order to find novel antistaphylococcal agents, we performed phenotypic screening of a library containing 15512 compounds against S. aureus ATCC43300. The molecular docking of hits was performed using the DOCK program and 10 compounds were selected for in vitro enzymatic activity inhibition assay. Two inhibitors were identified, N,N-diethyl-N′-(5-nitro-2-(quinazolin-2-yl)phenyl)propane-1,3-diamine (1) and acridin-9-yl-(1H-benzoimidazol-5-yl)-amine (2), which decrease sortase A activity with IC(50) values of 160.3 µM and 207.01 µM, respectively. It was found that compounds 1 and 2 possess antibacterial activity toward 29 tested multidrug resistant S. aureus strains with MIC values ranging from 78.12 to 312.5 mg/L. These compounds can be used for further structural optimization and biological research.
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spelling pubmed-86589982021-12-10 Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A Volynets, Galyna Vyshniakova, Hanna Nitulescu, Georgiana Nitulescu, George Mihai Ungurianu, Anca Margina, Denisa Moshynets, Olena Bdzhola, Volodymyr Koleiev, Ihor Iungin, Olga Tarnavskiy, Sergiy Yarmoluk, Sergiy Molecules Article Staphylococcus aureus (S. aureus) is a causative agent of many hospital- and community-acquired infections with the tendency to develop resistance to all known antibiotics. Therefore, the development of novel antistaphylococcal agents is of urgent need. Sortase A is considered a promising molecular target for the development of antistaphylococcal agents. The main aim of this study was to identify novel sortase A inhibitors. In order to find novel antistaphylococcal agents, we performed phenotypic screening of a library containing 15512 compounds against S. aureus ATCC43300. The molecular docking of hits was performed using the DOCK program and 10 compounds were selected for in vitro enzymatic activity inhibition assay. Two inhibitors were identified, N,N-diethyl-N′-(5-nitro-2-(quinazolin-2-yl)phenyl)propane-1,3-diamine (1) and acridin-9-yl-(1H-benzoimidazol-5-yl)-amine (2), which decrease sortase A activity with IC(50) values of 160.3 µM and 207.01 µM, respectively. It was found that compounds 1 and 2 possess antibacterial activity toward 29 tested multidrug resistant S. aureus strains with MIC values ranging from 78.12 to 312.5 mg/L. These compounds can be used for further structural optimization and biological research. MDPI 2021-11-24 /pmc/articles/PMC8658998/ /pubmed/34885677 http://dx.doi.org/10.3390/molecules26237095 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
Volynets, Galyna
Vyshniakova, Hanna
Nitulescu, Georgiana
Nitulescu, George Mihai
Ungurianu, Anca
Margina, Denisa
Moshynets, Olena
Bdzhola, Volodymyr
Koleiev, Ihor
Iungin, Olga
Tarnavskiy, Sergiy
Yarmoluk, Sergiy
Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A
title Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A
title_full Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A
title_fullStr Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A
title_full_unstemmed Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A
title_short Identification of Novel Antistaphylococcal Hit Compounds Targeting Sortase A
title_sort identification of novel antistaphylococcal hit compounds targeting sortase a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658998/
https://www.ncbi.nlm.nih.gov/pubmed/34885677
http://dx.doi.org/10.3390/molecules26237095
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