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Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide

Medicago truncatula in symbiosis with its rhizobial bacterium partner produces more than 700 nodule-specific cysteine-rich (NCR) peptides with diverse physicochemical properties. Most of the cationic NCR peptides have antimicrobial activity and the potential to tackle antimicrobial resistance with t...

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Autores principales: Howan, Dian H. O., Jenei, Sándor, Szolomajer, János, Endre, Gabriella, Kondorosi, Éva, Tóth, Gábor K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917201/
https://www.ncbi.nlm.nih.gov/pubmed/36769017
http://dx.doi.org/10.3390/ijms24032694
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author Howan, Dian H. O.
Jenei, Sándor
Szolomajer, János
Endre, Gabriella
Kondorosi, Éva
Tóth, Gábor K.
author_facet Howan, Dian H. O.
Jenei, Sándor
Szolomajer, János
Endre, Gabriella
Kondorosi, Éva
Tóth, Gábor K.
author_sort Howan, Dian H. O.
collection PubMed
description Medicago truncatula in symbiosis with its rhizobial bacterium partner produces more than 700 nodule-specific cysteine-rich (NCR) peptides with diverse physicochemical properties. Most of the cationic NCR peptides have antimicrobial activity and the potential to tackle antimicrobial resistance with their novel modes of action. This work focuses on the antibacterial activity of the NCR169 peptide derivatives as we previously demonstrated that the C-terminal sequence of NCR169 (NCR169C(17–38)) has antifungal activity, affecting the viability, morphology, and biofilm formation of various Candida species. Here, we show that NCR169C(17–38) and its various substituted derivatives are also able to kill ESKAPE pathogens such as Enterococcus faecalis, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa, and Escherichia coli. The replacement of the two cysteines with serines enhanced the antimicrobial activity against most of the tested bacteria, indicating that the formation of a disulfide bridge is not required. As tryptophan can play role in the interaction with bacterial membranes and thus in antibacterial activity, we replaced the tryptophans in the NCR169C(17–38)C(12,17)/S sequence with various modified tryptophans, namely 5-methyl tryptophan, 5-fluoro tryptophan, 6-fluoro tryptophan, 7-aza tryptophan, and 5-methoxy tryptophan, in the synthesis of NCR169C(17–38)C(12,17)/S analogs. The results demonstrate that the presence of modified fluorotryptophans can significantly enhance the antimicrobial activity without notable hemolytic effect, and this finding could be beneficial for the further development of new AMPs from the members of the NCR peptide family.
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spelling pubmed-99172012023-02-11 Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide Howan, Dian H. O. Jenei, Sándor Szolomajer, János Endre, Gabriella Kondorosi, Éva Tóth, Gábor K. Int J Mol Sci Article Medicago truncatula in symbiosis with its rhizobial bacterium partner produces more than 700 nodule-specific cysteine-rich (NCR) peptides with diverse physicochemical properties. Most of the cationic NCR peptides have antimicrobial activity and the potential to tackle antimicrobial resistance with their novel modes of action. This work focuses on the antibacterial activity of the NCR169 peptide derivatives as we previously demonstrated that the C-terminal sequence of NCR169 (NCR169C(17–38)) has antifungal activity, affecting the viability, morphology, and biofilm formation of various Candida species. Here, we show that NCR169C(17–38) and its various substituted derivatives are also able to kill ESKAPE pathogens such as Enterococcus faecalis, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa, and Escherichia coli. The replacement of the two cysteines with serines enhanced the antimicrobial activity against most of the tested bacteria, indicating that the formation of a disulfide bridge is not required. As tryptophan can play role in the interaction with bacterial membranes and thus in antibacterial activity, we replaced the tryptophans in the NCR169C(17–38)C(12,17)/S sequence with various modified tryptophans, namely 5-methyl tryptophan, 5-fluoro tryptophan, 6-fluoro tryptophan, 7-aza tryptophan, and 5-methoxy tryptophan, in the synthesis of NCR169C(17–38)C(12,17)/S analogs. The results demonstrate that the presence of modified fluorotryptophans can significantly enhance the antimicrobial activity without notable hemolytic effect, and this finding could be beneficial for the further development of new AMPs from the members of the NCR peptide family. MDPI 2023-01-31 /pmc/articles/PMC9917201/ /pubmed/36769017 http://dx.doi.org/10.3390/ijms24032694 Text en © 2023 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
Howan, Dian H. O.
Jenei, Sándor
Szolomajer, János
Endre, Gabriella
Kondorosi, Éva
Tóth, Gábor K.
Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide
title Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide
title_full Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide
title_fullStr Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide
title_full_unstemmed Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide
title_short Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C Peptide
title_sort enhanced antibacterial activity of substituted derivatives of ncr169c peptide
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917201/
https://www.ncbi.nlm.nih.gov/pubmed/36769017
http://dx.doi.org/10.3390/ijms24032694
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