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Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species

The growing global threat of antimicrobial resistance is reaching a crisis point as common bacterial infections, including those caused by pathogenic Neisseria species, are becoming increasingly untreatable. This is compelling the scientific community to search for new antimicrobial agents, taking a...

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Autores principales: Akomoneh, Elvis Achondou, Gestels, Zina, Abdellati, Saïd, Vereecken, Katleen, Bartholomeeusen, Koen, Van den Bossche, Dorien, Kenyon, Chris, Manoharan-Basil, Sheeba Santhini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10668837/
https://www.ncbi.nlm.nih.gov/pubmed/37998794
http://dx.doi.org/10.3390/antibiotics12111592
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author Akomoneh, Elvis Achondou
Gestels, Zina
Abdellati, Saïd
Vereecken, Katleen
Bartholomeeusen, Koen
Van den Bossche, Dorien
Kenyon, Chris
Manoharan-Basil, Sheeba Santhini
author_facet Akomoneh, Elvis Achondou
Gestels, Zina
Abdellati, Saïd
Vereecken, Katleen
Bartholomeeusen, Koen
Van den Bossche, Dorien
Kenyon, Chris
Manoharan-Basil, Sheeba Santhini
author_sort Akomoneh, Elvis Achondou
collection PubMed
description The growing global threat of antimicrobial resistance is reaching a crisis point as common bacterial infections, including those caused by pathogenic Neisseria species, are becoming increasingly untreatable. This is compelling the scientific community to search for new antimicrobial agents, taking advantage of computational mining and using whole genome sequences to discover natural products from the human microbiome with antibiotic effects. In this study, we investigated the crude extract from a Rothia dentocariosa strain with demonstrated antimicrobial activity against pathogenic Neisseria spp. by spot-on-lawn assay. The genomic DNA of the R. dentocariosa strain was sequenced, and bioinformatic evaluation was performed using antiSMASH and PRISM to search for biosynthetic gene clusters (BGCs). The crude extract with potential antimicrobial activity was run on Tricine-SDS-PAGE, and the putative peptides were characterised using liquid chromatography–tandem mass spectrometry (LC-MS). The crude extract inhibited the growth of the pathogenic Neisseria spp. Six BGCs were identified corresponding to non-ribosomal peptide synthases (NRPSs), polyketide synthases (PKSs), and ribosomally synthesised and post-translationally modified peptides. Three peptides were also identified corresponding to Actinorhodin polyketide putative beta-ketoacyl synthase 1. These findings serve as a useful reference to facilitate the research and development of NRPS and PKS as antimicrobial products against multidrug-resistant N. gonorrhoeae.
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spelling pubmed-106688372023-11-04 Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species Akomoneh, Elvis Achondou Gestels, Zina Abdellati, Saïd Vereecken, Katleen Bartholomeeusen, Koen Van den Bossche, Dorien Kenyon, Chris Manoharan-Basil, Sheeba Santhini Antibiotics (Basel) Article The growing global threat of antimicrobial resistance is reaching a crisis point as common bacterial infections, including those caused by pathogenic Neisseria species, are becoming increasingly untreatable. This is compelling the scientific community to search for new antimicrobial agents, taking advantage of computational mining and using whole genome sequences to discover natural products from the human microbiome with antibiotic effects. In this study, we investigated the crude extract from a Rothia dentocariosa strain with demonstrated antimicrobial activity against pathogenic Neisseria spp. by spot-on-lawn assay. The genomic DNA of the R. dentocariosa strain was sequenced, and bioinformatic evaluation was performed using antiSMASH and PRISM to search for biosynthetic gene clusters (BGCs). The crude extract with potential antimicrobial activity was run on Tricine-SDS-PAGE, and the putative peptides were characterised using liquid chromatography–tandem mass spectrometry (LC-MS). The crude extract inhibited the growth of the pathogenic Neisseria spp. Six BGCs were identified corresponding to non-ribosomal peptide synthases (NRPSs), polyketide synthases (PKSs), and ribosomally synthesised and post-translationally modified peptides. Three peptides were also identified corresponding to Actinorhodin polyketide putative beta-ketoacyl synthase 1. These findings serve as a useful reference to facilitate the research and development of NRPS and PKS as antimicrobial products against multidrug-resistant N. gonorrhoeae. MDPI 2023-11-04 /pmc/articles/PMC10668837/ /pubmed/37998794 http://dx.doi.org/10.3390/antibiotics12111592 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
Akomoneh, Elvis Achondou
Gestels, Zina
Abdellati, Saïd
Vereecken, Katleen
Bartholomeeusen, Koen
Van den Bossche, Dorien
Kenyon, Chris
Manoharan-Basil, Sheeba Santhini
Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species
title Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species
title_full Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species
title_fullStr Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species
title_full_unstemmed Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species
title_short Genome Mining Uncovers NRPS and PKS Clusters in Rothia dentocariosa with Inhibitory Activity against Neisseria Species
title_sort genome mining uncovers nrps and pks clusters in rothia dentocariosa with inhibitory activity against neisseria species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10668837/
https://www.ncbi.nlm.nih.gov/pubmed/37998794
http://dx.doi.org/10.3390/antibiotics12111592
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