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The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific

Antibiotic resistance is an increasing threat to human health. A direct link has been established between antimicrobial self-resistance determinants of antibiotic producers, environmental bacteria, and clinical pathogens. Natural odilorhabdins (ODLs) constitute a new family of 10-mer linear cationic...

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Autores principales: Lanois-Nouri, Anne, Pantel, Lucile, Fu, Jun, Houard, Jessica, Ogier, Jean-Claude, Polikanov, Yury S., Racine, Emilie, Wang, Hailong, Gaudriault, Sophie, Givaudan, Alain, Gualtieri, Maxime
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8749412/
https://www.ncbi.nlm.nih.gov/pubmed/35012352
http://dx.doi.org/10.1128/mbio.02826-21
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author Lanois-Nouri, Anne
Pantel, Lucile
Fu, Jun
Houard, Jessica
Ogier, Jean-Claude
Polikanov, Yury S.
Racine, Emilie
Wang, Hailong
Gaudriault, Sophie
Givaudan, Alain
Gualtieri, Maxime
author_facet Lanois-Nouri, Anne
Pantel, Lucile
Fu, Jun
Houard, Jessica
Ogier, Jean-Claude
Polikanov, Yury S.
Racine, Emilie
Wang, Hailong
Gaudriault, Sophie
Givaudan, Alain
Gualtieri, Maxime
author_sort Lanois-Nouri, Anne
collection PubMed
description Antibiotic resistance is an increasing threat to human health. A direct link has been established between antimicrobial self-resistance determinants of antibiotic producers, environmental bacteria, and clinical pathogens. Natural odilorhabdins (ODLs) constitute a new family of 10-mer linear cationic peptide antibiotics inhibiting bacterial translation by binding to the 30S subunit of the ribosome. These bioactive secondary metabolites are produced by entomopathogenic bacterial symbiont Xenorhabdus (Morganellaceae), vectored by the soil-dwelling nematodes. ODL-producing Xenorhabdus nematophila symbionts have mechanisms of self-protection. In this study, we cloned the 44.5-kb odl biosynthetic gene cluster (odl-BGC) of the symbiont by recombineering and showed that the N-acetyltransferase-encoding gene, oatA, is responsible for ODL resistance. In vitro acetylation and liquid chromatography-tandem mass spectrometry (LC-MS/MS) analyses showed that OatA targeted the side chain amino group of ODL rare amino acids, leading to a loss of translation inhibition and antibacterial properties. Functional, genomic, and phylogenetic analyses of oatA revealed an exclusive cis-link to the odilorhabdin BGC, found only in X. nematophila and a specific phylogenetic clade of Photorhabdus. This work highlights the coevolution of antibiotic production and self-resistance as ancient features of this unique tripartite complex of host-vector-symbiont interactions without odl-BGC dissemination by lateral gene transfer.
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spelling pubmed-87494122022-01-24 The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific Lanois-Nouri, Anne Pantel, Lucile Fu, Jun Houard, Jessica Ogier, Jean-Claude Polikanov, Yury S. Racine, Emilie Wang, Hailong Gaudriault, Sophie Givaudan, Alain Gualtieri, Maxime mBio Research Article Antibiotic resistance is an increasing threat to human health. A direct link has been established between antimicrobial self-resistance determinants of antibiotic producers, environmental bacteria, and clinical pathogens. Natural odilorhabdins (ODLs) constitute a new family of 10-mer linear cationic peptide antibiotics inhibiting bacterial translation by binding to the 30S subunit of the ribosome. These bioactive secondary metabolites are produced by entomopathogenic bacterial symbiont Xenorhabdus (Morganellaceae), vectored by the soil-dwelling nematodes. ODL-producing Xenorhabdus nematophila symbionts have mechanisms of self-protection. In this study, we cloned the 44.5-kb odl biosynthetic gene cluster (odl-BGC) of the symbiont by recombineering and showed that the N-acetyltransferase-encoding gene, oatA, is responsible for ODL resistance. In vitro acetylation and liquid chromatography-tandem mass spectrometry (LC-MS/MS) analyses showed that OatA targeted the side chain amino group of ODL rare amino acids, leading to a loss of translation inhibition and antibacterial properties. Functional, genomic, and phylogenetic analyses of oatA revealed an exclusive cis-link to the odilorhabdin BGC, found only in X. nematophila and a specific phylogenetic clade of Photorhabdus. This work highlights the coevolution of antibiotic production and self-resistance as ancient features of this unique tripartite complex of host-vector-symbiont interactions without odl-BGC dissemination by lateral gene transfer. American Society for Microbiology 2022-01-11 /pmc/articles/PMC8749412/ /pubmed/35012352 http://dx.doi.org/10.1128/mbio.02826-21 Text en Copyright © 2022 Lanois-Nouri et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Lanois-Nouri, Anne
Pantel, Lucile
Fu, Jun
Houard, Jessica
Ogier, Jean-Claude
Polikanov, Yury S.
Racine, Emilie
Wang, Hailong
Gaudriault, Sophie
Givaudan, Alain
Gualtieri, Maxime
The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific
title The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific
title_full The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific
title_fullStr The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific
title_full_unstemmed The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific
title_short The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase Self-Resistance Locus Are Niche and Species Specific
title_sort odilorhabdin antibiotic biosynthetic cluster and acetyltransferase self-resistance locus are niche and species specific
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8749412/
https://www.ncbi.nlm.nih.gov/pubmed/35012352
http://dx.doi.org/10.1128/mbio.02826-21
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