The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19
Abstract Background Carbapenem resistant Acinetobacter species have caused great difficulties in clinical therapy in the worldwide. Here we describe an Acinetobacter johnsonii M19 with a novel bla OXA-23 containing transposon Tn6681 on the conjugative plasmid pFM-M19 and the ability to transferand c...
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doaj-57a383db7b8747309b0adaf7abb1a7442020-11-25T04:09:17ZengBMCAntimicrobial Resistance and Infection Control2047-29942020-11-019111110.1186/s13756-020-00832-4The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19Gongli Zong0Chuanqing Zhong1Jiafang Fu2Yu Zhang3Peipei Zhang4Wenchi Zhang5Yan Xu6Guangxiang Cao7Rongzhen Zhang8Key Laboratory of Industrial Biotechnology of Ministry of Education and School of Biotechnology, Jiangnan UniversitySchool of Municipal and Environmental Engineering, Shandong Jianzhu UniversityDepartment of Epidemiology, The First Affiliated Hospital of Shandong First Medical UniversitySchool of Municipal and Environmental Engineering, Shandong Jianzhu UniversityDepartment of Epidemiology, The First Affiliated Hospital of Shandong First Medical UniversitySolomon H. Snyder Department of Neuroscience, Johns Hopkins University School of MedicineKey Laboratory of Industrial Biotechnology of Ministry of Education and School of Biotechnology, Jiangnan UniversityDepartment of Epidemiology, The First Affiliated Hospital of Shandong First Medical UniversityKey Laboratory of Industrial Biotechnology of Ministry of Education and School of Biotechnology, Jiangnan UniversityAbstract Background Carbapenem resistant Acinetobacter species have caused great difficulties in clinical therapy in the worldwide. Here we describe an Acinetobacter johnsonii M19 with a novel bla OXA-23 containing transposon Tn6681 on the conjugative plasmid pFM-M19 and the ability to transferand carbapenem resistance. Methods A. johnsonii M19 was isolated under selection with 8 mg/L meropenem from hospital sewage, and the minimum inhibitory concentrations (MICs) for the representative carbapenems imipenem, meropenem and ertapenem were determined. The genome of A. johnsonii M19 was sequenced by PacBio RS II and Illumina HiSeq 4000 platforms. A homologous model of OXA-23 was generated, and molecular docking models with imipenem, meropenem and ertapenem were constructed by Discovery Studio 2.0. Type IV secretion system and conjugation elements were identified by the Pathosystems Resource Integration Center (PATRIC) server and the oriTfinder. Mating experiments were performed to evaluate transfer of OXA-23 to Escherichia coli 25DN. Results MICs of A. johnsonii M19 for imipenem, meropenem and ertapenem were 128 mg/L, 48 mg/L and 24 mg/L, respectively. Genome sequencing identified plasmid pFM-M19, which harbours the carbapenem resistance gene bla OXA-23 within the novel transposon Tn6681. Molecular docking analysis indicated that the elongated hydrophobic tunnel of OXA-23 provides a hydrophobic environment and that Lys-216, Thr-217, Met-221 and Arg-259 were the conserved amino acids bound to imipenem, meropenem and ertapenem. Furthermore, pFM-M19 could transfer bla OXA-23 to E. coli 25DN by conjugation, resulting in carbapenem-resistant transconjugants. Conclusions Our investigation showed that A. johnsonii M19 is a source and disseminator of bla OXA-23 and carbapenem resistance. The ability to transfer bla OXA-23 to other species by the conjugative plasmid pFM-M19 raises the risk of spread of carbapenem resistance. Graphic abstract The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19.http://link.springer.com/article/10.1186/s13756-020-00832-4Acinetobacter johnsoniiCarbapenem resistanceConjugative plasmidNovel transposon Tn6681bla OXA-23 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gongli Zong Chuanqing Zhong Jiafang Fu Yu Zhang Peipei Zhang Wenchi Zhang Yan Xu Guangxiang Cao Rongzhen Zhang |
spellingShingle |
Gongli Zong Chuanqing Zhong Jiafang Fu Yu Zhang Peipei Zhang Wenchi Zhang Yan Xu Guangxiang Cao Rongzhen Zhang The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19 Antimicrobial Resistance and Infection Control Acinetobacter johnsonii Carbapenem resistance Conjugative plasmid Novel transposon Tn6681 bla OXA-23 |
author_facet |
Gongli Zong Chuanqing Zhong Jiafang Fu Yu Zhang Peipei Zhang Wenchi Zhang Yan Xu Guangxiang Cao Rongzhen Zhang |
author_sort |
Gongli Zong |
title |
The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19 |
title_short |
The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19 |
title_full |
The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19 |
title_fullStr |
The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19 |
title_full_unstemmed |
The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19 |
title_sort |
carbapenem resistance gene bla oxa-23 is disseminated by a conjugative plasmid containing the novel transposon tn6681 in acinetobacter johnsonii m19 |
publisher |
BMC |
series |
Antimicrobial Resistance and Infection Control |
issn |
2047-2994 |
publishDate |
2020-11-01 |
description |
Abstract Background Carbapenem resistant Acinetobacter species have caused great difficulties in clinical therapy in the worldwide. Here we describe an Acinetobacter johnsonii M19 with a novel bla OXA-23 containing transposon Tn6681 on the conjugative plasmid pFM-M19 and the ability to transferand carbapenem resistance. Methods A. johnsonii M19 was isolated under selection with 8 mg/L meropenem from hospital sewage, and the minimum inhibitory concentrations (MICs) for the representative carbapenems imipenem, meropenem and ertapenem were determined. The genome of A. johnsonii M19 was sequenced by PacBio RS II and Illumina HiSeq 4000 platforms. A homologous model of OXA-23 was generated, and molecular docking models with imipenem, meropenem and ertapenem were constructed by Discovery Studio 2.0. Type IV secretion system and conjugation elements were identified by the Pathosystems Resource Integration Center (PATRIC) server and the oriTfinder. Mating experiments were performed to evaluate transfer of OXA-23 to Escherichia coli 25DN. Results MICs of A. johnsonii M19 for imipenem, meropenem and ertapenem were 128 mg/L, 48 mg/L and 24 mg/L, respectively. Genome sequencing identified plasmid pFM-M19, which harbours the carbapenem resistance gene bla OXA-23 within the novel transposon Tn6681. Molecular docking analysis indicated that the elongated hydrophobic tunnel of OXA-23 provides a hydrophobic environment and that Lys-216, Thr-217, Met-221 and Arg-259 were the conserved amino acids bound to imipenem, meropenem and ertapenem. Furthermore, pFM-M19 could transfer bla OXA-23 to E. coli 25DN by conjugation, resulting in carbapenem-resistant transconjugants. Conclusions Our investigation showed that A. johnsonii M19 is a source and disseminator of bla OXA-23 and carbapenem resistance. The ability to transfer bla OXA-23 to other species by the conjugative plasmid pFM-M19 raises the risk of spread of carbapenem resistance. Graphic abstract The carbapenem resistance gene bla OXA-23 is disseminated by a conjugative plasmid containing the novel transposon Tn6681 in Acinetobacter johnsonii M19. |
topic |
Acinetobacter johnsonii Carbapenem resistance Conjugative plasmid Novel transposon Tn6681 bla OXA-23 |
url |
http://link.springer.com/article/10.1186/s13756-020-00832-4 |
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