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Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein

Treating staphylococcal biofilm-associated infections is challenging. Based on the findings that compound 2 targeting the HK domain of Staphylococcus epidermidis YycG has bactericidal and antibiofilm activities against staphylococci, six newly synthesized derivatives were evaluated for their antibac...

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Autores principales: Liu, Huayong, Zhao, Dan, Chang, Jun, Yan, Liang, Zhao, Fuju, Wu, Youcong, Xu, Tao, Gong, Ting, Chen, Li, He, Nianan, Wu, Yang, Han, Shiqing, Qu, Di
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4057637/
https://www.ncbi.nlm.nih.gov/pubmed/24737057
http://dx.doi.org/10.1007/s00253-014-5685-8
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author Liu, Huayong
Zhao, Dan
Chang, Jun
Yan, Liang
Zhao, Fuju
Wu, Youcong
Xu, Tao
Gong, Ting
Chen, Li
He, Nianan
Wu, Yang
Han, Shiqing
Qu, Di
author_facet Liu, Huayong
Zhao, Dan
Chang, Jun
Yan, Liang
Zhao, Fuju
Wu, Youcong
Xu, Tao
Gong, Ting
Chen, Li
He, Nianan
Wu, Yang
Han, Shiqing
Qu, Di
author_sort Liu, Huayong
collection PubMed
description Treating staphylococcal biofilm-associated infections is challenging. Based on the findings that compound 2 targeting the HK domain of Staphylococcus epidermidis YycG has bactericidal and antibiofilm activities against staphylococci, six newly synthesized derivatives were evaluated for their antibacterial activities. The six derivatives of compound 2 inhibited autophosphorylation of recombinant YycG′ and the IC(50) values ranged from 24.2 to 71.2 μM. The derivatives displayed bactericidal activity against planktonic S. epidermidis or Staphylococcus aureus strains in the MIC range of 1.5–3.1 μM. All the derivatives had antibiofilm activities against the 6- and 24-h biofilms of S. epidermidis. Compared to the prototype compound 2, they had less cytotoxicity for Vero cells and less hemolytic activity for human erythrocytes. The derivatives showed antibacterial activities against clinical methicillin-resistant staphylococcal isolates. The structural modification of YycG inhibitors will assist the discovery of novel agents to eliminate biofilm infections and multidrug-resistant staphylococcal infections. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s00253-014-5685-8) contains supplementary material, which is available to authorized users.
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spelling pubmed-40576372014-06-18 Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein Liu, Huayong Zhao, Dan Chang, Jun Yan, Liang Zhao, Fuju Wu, Youcong Xu, Tao Gong, Ting Chen, Li He, Nianan Wu, Yang Han, Shiqing Qu, Di Appl Microbiol Biotechnol Applied Genetics and Molecular Biotechnology Treating staphylococcal biofilm-associated infections is challenging. Based on the findings that compound 2 targeting the HK domain of Staphylococcus epidermidis YycG has bactericidal and antibiofilm activities against staphylococci, six newly synthesized derivatives were evaluated for their antibacterial activities. The six derivatives of compound 2 inhibited autophosphorylation of recombinant YycG′ and the IC(50) values ranged from 24.2 to 71.2 μM. The derivatives displayed bactericidal activity against planktonic S. epidermidis or Staphylococcus aureus strains in the MIC range of 1.5–3.1 μM. All the derivatives had antibiofilm activities against the 6- and 24-h biofilms of S. epidermidis. Compared to the prototype compound 2, they had less cytotoxicity for Vero cells and less hemolytic activity for human erythrocytes. The derivatives showed antibacterial activities against clinical methicillin-resistant staphylococcal isolates. The structural modification of YycG inhibitors will assist the discovery of novel agents to eliminate biofilm infections and multidrug-resistant staphylococcal infections. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s00253-014-5685-8) contains supplementary material, which is available to authorized users. Springer Berlin Heidelberg 2014-04-17 2014 /pmc/articles/PMC4057637/ /pubmed/24737057 http://dx.doi.org/10.1007/s00253-014-5685-8 Text en © The Author(s) 2014 https://creativecommons.org/licenses/by/4.0/ Open Access This article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Applied Genetics and Molecular Biotechnology
Liu, Huayong
Zhao, Dan
Chang, Jun
Yan, Liang
Zhao, Fuju
Wu, Youcong
Xu, Tao
Gong, Ting
Chen, Li
He, Nianan
Wu, Yang
Han, Shiqing
Qu, Di
Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein
title Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein
title_full Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein
title_fullStr Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein
title_full_unstemmed Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein
title_short Efficacy of novel antibacterial compounds targeting histidine kinase YycG protein
title_sort efficacy of novel antibacterial compounds targeting histidine kinase yycg protein
topic Applied Genetics and Molecular Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4057637/
https://www.ncbi.nlm.nih.gov/pubmed/24737057
http://dx.doi.org/10.1007/s00253-014-5685-8
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