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Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil

Oxazolidinones are one of the most important antimicrobials potentially active against glycopeptide- and β-lactam-resistant Gram-positive pathogens. Linezolid—the first oxazolidinone to be approved for clinical use in 2000 by the US Food and Drug Administration—and the newer molecule in the class, t...

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Autores principales: Almeida, Lara M., Gaca, Anthony, Bispo, Paulo M., Lebreton, François, Saavedra, Jose T., Silva, Rafael A., Basílio-Júnior, Irinaldo D., Zorzi, Felipe M., Filsner, Pedro H., Moreno, Andrea M., Gilmore, Michael S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7546817/
https://www.ncbi.nlm.nih.gov/pubmed/33102417
http://dx.doi.org/10.3389/fpubh.2020.00518
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author Almeida, Lara M.
Gaca, Anthony
Bispo, Paulo M.
Lebreton, François
Saavedra, Jose T.
Silva, Rafael A.
Basílio-Júnior, Irinaldo D.
Zorzi, Felipe M.
Filsner, Pedro H.
Moreno, Andrea M.
Gilmore, Michael S.
author_facet Almeida, Lara M.
Gaca, Anthony
Bispo, Paulo M.
Lebreton, François
Saavedra, Jose T.
Silva, Rafael A.
Basílio-Júnior, Irinaldo D.
Zorzi, Felipe M.
Filsner, Pedro H.
Moreno, Andrea M.
Gilmore, Michael S.
author_sort Almeida, Lara M.
collection PubMed
description Oxazolidinones are one of the most important antimicrobials potentially active against glycopeptide- and β-lactam-resistant Gram-positive pathogens. Linezolid—the first oxazolidinone to be approved for clinical use in 2000 by the US Food and Drug Administration—and the newer molecule in the class, tedizolid, inhibit protein synthesis by suppressing the formation of the 70S ribosomal complex in bacteria. Over the past two decades, transferable oxazolidinone resistance genes, in particular cfr and optrA, have been identified in Firmicutes isolated from healthcare-related infections, livestock, and the environment. Our goals in this study were to investigate the genetic contexts and the transferability of the cfr and optrA genes and examine genomic features, such as antimicrobial resistance genes, plasmid incompatibility types, and CRISPR-Cas defenses of a linezolid-resistant Enterococcus faecalis isolated in feces from a healthy pig during an antimicrobial surveillance program for animal production in Brazil. The cfr gene was found to be integrated into a transposon-like structure of 7,759 nt flanked by IS1216E and capable of excising and circularizing, distinguishing it from known genetic contexts for cfr in Enterococcus spp., while optrA was inserted into an Inc18 broad host-range plasmid of >58 kb. Conjugal transfer of cfr and optrA was shown by filter mating. The coexistence of cfr and optrA in an E. faecalis isolated from a healthy nursery pig highlights the need for monitoring the use of antibiotics in the Brazilian swine production system for controlling spread and proliferation of antibiotic resistance.
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spelling pubmed-75468172020-10-22 Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil Almeida, Lara M. Gaca, Anthony Bispo, Paulo M. Lebreton, François Saavedra, Jose T. Silva, Rafael A. Basílio-Júnior, Irinaldo D. Zorzi, Felipe M. Filsner, Pedro H. Moreno, Andrea M. Gilmore, Michael S. Front Public Health Public Health Oxazolidinones are one of the most important antimicrobials potentially active against glycopeptide- and β-lactam-resistant Gram-positive pathogens. Linezolid—the first oxazolidinone to be approved for clinical use in 2000 by the US Food and Drug Administration—and the newer molecule in the class, tedizolid, inhibit protein synthesis by suppressing the formation of the 70S ribosomal complex in bacteria. Over the past two decades, transferable oxazolidinone resistance genes, in particular cfr and optrA, have been identified in Firmicutes isolated from healthcare-related infections, livestock, and the environment. Our goals in this study were to investigate the genetic contexts and the transferability of the cfr and optrA genes and examine genomic features, such as antimicrobial resistance genes, plasmid incompatibility types, and CRISPR-Cas defenses of a linezolid-resistant Enterococcus faecalis isolated in feces from a healthy pig during an antimicrobial surveillance program for animal production in Brazil. The cfr gene was found to be integrated into a transposon-like structure of 7,759 nt flanked by IS1216E and capable of excising and circularizing, distinguishing it from known genetic contexts for cfr in Enterococcus spp., while optrA was inserted into an Inc18 broad host-range plasmid of >58 kb. Conjugal transfer of cfr and optrA was shown by filter mating. The coexistence of cfr and optrA in an E. faecalis isolated from a healthy nursery pig highlights the need for monitoring the use of antibiotics in the Brazilian swine production system for controlling spread and proliferation of antibiotic resistance. Frontiers Media S.A. 2020-09-24 /pmc/articles/PMC7546817/ /pubmed/33102417 http://dx.doi.org/10.3389/fpubh.2020.00518 Text en Copyright © 2020 Almeida, Gaca, Bispo, Lebreton, Saavedra, Silva, Basílio-Júnior, Zorzi, Filsner, Moreno and Gilmore. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Public Health
Almeida, Lara M.
Gaca, Anthony
Bispo, Paulo M.
Lebreton, François
Saavedra, Jose T.
Silva, Rafael A.
Basílio-Júnior, Irinaldo D.
Zorzi, Felipe M.
Filsner, Pedro H.
Moreno, Andrea M.
Gilmore, Michael S.
Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil
title Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil
title_full Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil
title_fullStr Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil
title_full_unstemmed Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil
title_short Coexistence of the Oxazolidinone Resistance–Associated Genes cfr and optrA in Enterococcus faecalis From a Healthy Piglet in Brazil
title_sort coexistence of the oxazolidinone resistance–associated genes cfr and optra in enterococcus faecalis from a healthy piglet in brazil
topic Public Health
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7546817/
https://www.ncbi.nlm.nih.gov/pubmed/33102417
http://dx.doi.org/10.3389/fpubh.2020.00518
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