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Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing

In view of the current threat of antibiotic resistance, new antimicrobials with low risk of resistance development are demanded. Lcn972 is a lactococcal bacteriocin that inhibits septum formation by binding to the cell wall precursor lipid II in Lactococcus. It has a species-specific spectrum of act...

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Autores principales: Escobedo, Susana, Campelo, Ana B., Umu, Özgün C. O., López-González, María Jesús, Rodríguez, Ana, Diep, Dzung B., Martínez, Beatriz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964109/
https://www.ncbi.nlm.nih.gov/pubmed/36838466
http://dx.doi.org/10.3390/microorganisms11020501
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author Escobedo, Susana
Campelo, Ana B.
Umu, Özgün C. O.
López-González, María Jesús
Rodríguez, Ana
Diep, Dzung B.
Martínez, Beatriz
author_facet Escobedo, Susana
Campelo, Ana B.
Umu, Özgün C. O.
López-González, María Jesús
Rodríguez, Ana
Diep, Dzung B.
Martínez, Beatriz
author_sort Escobedo, Susana
collection PubMed
description In view of the current threat of antibiotic resistance, new antimicrobials with low risk of resistance development are demanded. Lcn972 is a lactococcal bacteriocin that inhibits septum formation by binding to the cell wall precursor lipid II in Lactococcus. It has a species-specific spectrum of activity, making Lcn972 an attractive template to develop or improve existing antibiotics. The aim of this work was to identify mutations present in the Lcn972-resistant clone Lactococcus cremoris D1-20, previously evolved from the sensitive strain L. cremoris MG1614. Whole-genome sequencing and comparison over the reference genome L. cremoris MG1363 identified several unexpected mutations in the parental strain MG1614, likely selected during in-house propagation. In the Lcn972R clone, two previously identified mutations were mapped and confirmed. Additionally, another transposition event deregulating cellobiose uptake was identified along with three point mutations of unknown consequences for Lcn972 resistance. Two new independent evolution experiments exposing L. cremoris MG1614 to Lcn972 revealed transposition of IS981 into the LLMG_RS12285 locus as the predominant mutation selected by Lcn972. This event occurs early during evolution and was found in 100% of the evolved clones, while other mutations were not selected. Therefore, activation of LLMG_RS12285 coding for a putative anti-ECF (extra-cytoplasmic function) sigma factor is regarded as the main Lcn972 resistance factor in L. cremoris MG1614.
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spelling pubmed-99641092023-02-26 Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing Escobedo, Susana Campelo, Ana B. Umu, Özgün C. O. López-González, María Jesús Rodríguez, Ana Diep, Dzung B. Martínez, Beatriz Microorganisms Article In view of the current threat of antibiotic resistance, new antimicrobials with low risk of resistance development are demanded. Lcn972 is a lactococcal bacteriocin that inhibits septum formation by binding to the cell wall precursor lipid II in Lactococcus. It has a species-specific spectrum of activity, making Lcn972 an attractive template to develop or improve existing antibiotics. The aim of this work was to identify mutations present in the Lcn972-resistant clone Lactococcus cremoris D1-20, previously evolved from the sensitive strain L. cremoris MG1614. Whole-genome sequencing and comparison over the reference genome L. cremoris MG1363 identified several unexpected mutations in the parental strain MG1614, likely selected during in-house propagation. In the Lcn972R clone, two previously identified mutations were mapped and confirmed. Additionally, another transposition event deregulating cellobiose uptake was identified along with three point mutations of unknown consequences for Lcn972 resistance. Two new independent evolution experiments exposing L. cremoris MG1614 to Lcn972 revealed transposition of IS981 into the LLMG_RS12285 locus as the predominant mutation selected by Lcn972. This event occurs early during evolution and was found in 100% of the evolved clones, while other mutations were not selected. Therefore, activation of LLMG_RS12285 coding for a putative anti-ECF (extra-cytoplasmic function) sigma factor is regarded as the main Lcn972 resistance factor in L. cremoris MG1614. MDPI 2023-02-16 /pmc/articles/PMC9964109/ /pubmed/36838466 http://dx.doi.org/10.3390/microorganisms11020501 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
Escobedo, Susana
Campelo, Ana B.
Umu, Özgün C. O.
López-González, María Jesús
Rodríguez, Ana
Diep, Dzung B.
Martínez, Beatriz
Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing
title Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing
title_full Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing
title_fullStr Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing
title_full_unstemmed Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing
title_short Resistance to the Bacteriocin Lcn972 Deciphered by Genome Sequencing
title_sort resistance to the bacteriocin lcn972 deciphered by genome sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964109/
https://www.ncbi.nlm.nih.gov/pubmed/36838466
http://dx.doi.org/10.3390/microorganisms11020501
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