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Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates

Nosocomial infections with Acinetobacter baumannii are a global problem in intensive care units with high mortality rates. Increasing resistance to first- and second-line antibiotics has forced the use of colistin as last-resort treatment, and increasing development of colistin resistance in A. baum...

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Autores principales: Trebosc, Vincent, Gartenmann, Sarah, Tötzl, Marcus, Lucchini, Valentina, Schellhorn, Birgit, Pieren, Michel, Lociuro, Sergio, Gitzinger, Marc, Tigges, Marcel, Bumann, Dirk, Kemmer, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6635527/
https://www.ncbi.nlm.nih.gov/pubmed/31311879
http://dx.doi.org/10.1128/mBio.01083-19
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author Trebosc, Vincent
Gartenmann, Sarah
Tötzl, Marcus
Lucchini, Valentina
Schellhorn, Birgit
Pieren, Michel
Lociuro, Sergio
Gitzinger, Marc
Tigges, Marcel
Bumann, Dirk
Kemmer, Christian
author_facet Trebosc, Vincent
Gartenmann, Sarah
Tötzl, Marcus
Lucchini, Valentina
Schellhorn, Birgit
Pieren, Michel
Lociuro, Sergio
Gitzinger, Marc
Tigges, Marcel
Bumann, Dirk
Kemmer, Christian
author_sort Trebosc, Vincent
collection PubMed
description Nosocomial infections with Acinetobacter baumannii are a global problem in intensive care units with high mortality rates. Increasing resistance to first- and second-line antibiotics has forced the use of colistin as last-resort treatment, and increasing development of colistin resistance in A. baumannii has been reported. We evaluated the transcriptional regulator PmrA as potential drug target to restore colistin efficacy in A. baumannii. Deletion of pmrA restored colistin susceptibility in 10 of the 12 extensively drug-resistant A. baumannii clinical isolates studied, indicating the importance of PmrA in the drug resistance phenotype. However, two strains remained highly resistant, indicating that PmrA-mediated overexpression of the phosphoethanolamine (PetN) transferase PmrC is not the exclusive colistin resistance mechanism in A. baumannii. A detailed genetic characterization revealed a new colistin resistance mechanism mediated by genetic integration of the insertion element ISAbaI upstream of the PmrC homolog EptA (93% identity), leading to its overexpression. We found that eptA was ubiquitously present in clinical strains belonging to the international clone 2, and ISAbaI integration upstream of eptA was required to mediate the colistin-resistant phenotype. In addition, we found a duplicated ISAbaI-eptA cassette in one isolate, indicating that this colistin resistance determinant may be embedded in a mobile genetic element. Our data disprove PmrA as a drug target for adjuvant therapy but highlight the importance of PetN transferase-mediated colistin resistance in clinical strains. We suggest that direct targeting of the homologous PetN transferases PmrC/EptA may have the potential to overcome colistin resistance in A. baumannii.
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spelling pubmed-66355272019-07-17 Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates Trebosc, Vincent Gartenmann, Sarah Tötzl, Marcus Lucchini, Valentina Schellhorn, Birgit Pieren, Michel Lociuro, Sergio Gitzinger, Marc Tigges, Marcel Bumann, Dirk Kemmer, Christian mBio Research Article Nosocomial infections with Acinetobacter baumannii are a global problem in intensive care units with high mortality rates. Increasing resistance to first- and second-line antibiotics has forced the use of colistin as last-resort treatment, and increasing development of colistin resistance in A. baumannii has been reported. We evaluated the transcriptional regulator PmrA as potential drug target to restore colistin efficacy in A. baumannii. Deletion of pmrA restored colistin susceptibility in 10 of the 12 extensively drug-resistant A. baumannii clinical isolates studied, indicating the importance of PmrA in the drug resistance phenotype. However, two strains remained highly resistant, indicating that PmrA-mediated overexpression of the phosphoethanolamine (PetN) transferase PmrC is not the exclusive colistin resistance mechanism in A. baumannii. A detailed genetic characterization revealed a new colistin resistance mechanism mediated by genetic integration of the insertion element ISAbaI upstream of the PmrC homolog EptA (93% identity), leading to its overexpression. We found that eptA was ubiquitously present in clinical strains belonging to the international clone 2, and ISAbaI integration upstream of eptA was required to mediate the colistin-resistant phenotype. In addition, we found a duplicated ISAbaI-eptA cassette in one isolate, indicating that this colistin resistance determinant may be embedded in a mobile genetic element. Our data disprove PmrA as a drug target for adjuvant therapy but highlight the importance of PetN transferase-mediated colistin resistance in clinical strains. We suggest that direct targeting of the homologous PetN transferases PmrC/EptA may have the potential to overcome colistin resistance in A. baumannii. American Society for Microbiology 2019-07-16 /pmc/articles/PMC6635527/ /pubmed/31311879 http://dx.doi.org/10.1128/mBio.01083-19 Text en Copyright © 2019 Trebosc 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
Trebosc, Vincent
Gartenmann, Sarah
Tötzl, Marcus
Lucchini, Valentina
Schellhorn, Birgit
Pieren, Michel
Lociuro, Sergio
Gitzinger, Marc
Tigges, Marcel
Bumann, Dirk
Kemmer, Christian
Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates
title Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates
title_full Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates
title_fullStr Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates
title_full_unstemmed Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates
title_short Dissecting Colistin Resistance Mechanisms in Extensively Drug-Resistant Acinetobacter baumannii Clinical Isolates
title_sort dissecting colistin resistance mechanisms in extensively drug-resistant acinetobacter baumannii clinical isolates
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6635527/
https://www.ncbi.nlm.nih.gov/pubmed/31311879
http://dx.doi.org/10.1128/mBio.01083-19
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