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A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves

Whole-genome sequencing of trimethoprim-resistant Escherichia coli strains MF2165 and PF9285 from healthy Swiss fattening calves revealed a so far uncharacterized dihydrofolate reductase gene, dfrA35. Functionality and association with trimethoprim resistance were demonstrated by cloning and express...

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Autores principales: Wüthrich, Dominik, Brilhante, Michael, Hausherr, Anna, Becker, Jens, Meylan, Mireille, Perreten, Vincent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506621/
https://www.ncbi.nlm.nih.gov/pubmed/31068437
http://dx.doi.org/10.1128/mSphere.00255-19
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author Wüthrich, Dominik
Brilhante, Michael
Hausherr, Anna
Becker, Jens
Meylan, Mireille
Perreten, Vincent
author_facet Wüthrich, Dominik
Brilhante, Michael
Hausherr, Anna
Becker, Jens
Meylan, Mireille
Perreten, Vincent
author_sort Wüthrich, Dominik
collection PubMed
description Whole-genome sequencing of trimethoprim-resistant Escherichia coli strains MF2165 and PF9285 from healthy Swiss fattening calves revealed a so far uncharacterized dihydrofolate reductase gene, dfrA35. Functionality and association with trimethoprim resistance were demonstrated by cloning and expressing dfrA35 in E. coli. The DfrA35 protein showed the closest amino acid identity (49.4%) to DfrA20 from Pasteurella multocida and to the Dfr determinants DfrG (41.2%), DfrD (40.8%), and DfrK (40.0%) found in Gram-positive bacteria. The dfrA35 gene was integrated within a florfenicol/chloramphenicol-sulfonamide resistance ISCR2 element (floR-ISCR2-dfrA35-sul2) next to a Tn21-like transposon that contained genes with resistance to sulfonamides (sul1), streptomycin (aadA1), gentamicin/tobramycin/kanamycin (aadB), and quaternary ammonium compounds (qacEΔ1). A search of GenBank databases revealed that dfrA35 was present in 26 other E. coli strains from different origins as well as in Acinetobacter. IMPORTANCE The presence of dfrA35 associated with ISCR2 in Escherichia coli from animals, as well as its presence in other E. coli strains from different sources and countries and in Acinetobacter, highlights the global spread of this gene and its potential for further dissemination. The genetic link of ISCR2-dfrA35 with other antibiotic and disinfectant resistance genes showed that multidrug-resistant E. coli may be selected and maintained by the use of either one of several antimicrobials.
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spelling pubmed-65066212019-05-16 A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves Wüthrich, Dominik Brilhante, Michael Hausherr, Anna Becker, Jens Meylan, Mireille Perreten, Vincent mSphere Observation Whole-genome sequencing of trimethoprim-resistant Escherichia coli strains MF2165 and PF9285 from healthy Swiss fattening calves revealed a so far uncharacterized dihydrofolate reductase gene, dfrA35. Functionality and association with trimethoprim resistance were demonstrated by cloning and expressing dfrA35 in E. coli. The DfrA35 protein showed the closest amino acid identity (49.4%) to DfrA20 from Pasteurella multocida and to the Dfr determinants DfrG (41.2%), DfrD (40.8%), and DfrK (40.0%) found in Gram-positive bacteria. The dfrA35 gene was integrated within a florfenicol/chloramphenicol-sulfonamide resistance ISCR2 element (floR-ISCR2-dfrA35-sul2) next to a Tn21-like transposon that contained genes with resistance to sulfonamides (sul1), streptomycin (aadA1), gentamicin/tobramycin/kanamycin (aadB), and quaternary ammonium compounds (qacEΔ1). A search of GenBank databases revealed that dfrA35 was present in 26 other E. coli strains from different origins as well as in Acinetobacter. IMPORTANCE The presence of dfrA35 associated with ISCR2 in Escherichia coli from animals, as well as its presence in other E. coli strains from different sources and countries and in Acinetobacter, highlights the global spread of this gene and its potential for further dissemination. The genetic link of ISCR2-dfrA35 with other antibiotic and disinfectant resistance genes showed that multidrug-resistant E. coli may be selected and maintained by the use of either one of several antimicrobials. American Society for Microbiology 2019-05-08 /pmc/articles/PMC6506621/ /pubmed/31068437 http://dx.doi.org/10.1128/mSphere.00255-19 Text en Copyright © 2019 Wüthrich 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 Observation
Wüthrich, Dominik
Brilhante, Michael
Hausherr, Anna
Becker, Jens
Meylan, Mireille
Perreten, Vincent
A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves
title A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves
title_full A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves
title_fullStr A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves
title_full_unstemmed A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves
title_short A Novel Trimethoprim Resistance Gene, dfrA35, Characterized from Escherichia coli from Calves
title_sort novel trimethoprim resistance gene, dfra35, characterized from escherichia coli from calves
topic Observation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506621/
https://www.ncbi.nlm.nih.gov/pubmed/31068437
http://dx.doi.org/10.1128/mSphere.00255-19
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