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Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.

In clinical practice, carbapenems and tigecycline are considered significant options for treating infections caused by multidrug-resistant Klebsiella spp. The continual evolution of resistance mechanisms to carbapenems and tigecycline is shattering the present condition. Meanwhile, convergence of th...

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Autores principales: Xiao, Tao, Peng, Kai, Chen, Qi, Hou, Xueqin, Huang, Weifeng, Lv, Hong, Yang, Xiaorong, Lei, Gaopeng, Li, Ruichao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241619/
https://www.ncbi.nlm.nih.gov/pubmed/35647621
http://dx.doi.org/10.1128/spectrum.00549-22
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author Xiao, Tao
Peng, Kai
Chen, Qi
Hou, Xueqin
Huang, Weifeng
Lv, Hong
Yang, Xiaorong
Lei, Gaopeng
Li, Ruichao
author_facet Xiao, Tao
Peng, Kai
Chen, Qi
Hou, Xueqin
Huang, Weifeng
Lv, Hong
Yang, Xiaorong
Lei, Gaopeng
Li, Ruichao
author_sort Xiao, Tao
collection PubMed
description In clinical practice, carbapenems and tigecycline are considered significant options for treating infections caused by multidrug-resistant Klebsiella spp. The continual evolution of resistance mechanisms to carbapenems and tigecycline is shattering the present condition. Meanwhile, convergence of the two resistance mechanisms in a single strain has been reported repeatedly, posing a significant threat to public health and safety. In this study, two carbapenem- and tigecycline-resistant Klebsiella species were obtained from patients and investigated using antimicrobial susceptibility testing, conjugation assay, whole-genome sequencing, and bioinformatics analysis. In Klebsiella variicola FK2020ZBJ35, an untransferable multidrug IncFIB(Mar)/IncHI1B-like plasmid carrying tmexCD2-toprJ2, bla(IMP-4), and bla(NDM-1) was discovered, as was a similar plasmid carrying tmexCD1-toprJ1 and bla(IMP-4) in Klebsiella quasipneumoniae 2019SCSN059. Genetic context analysis found that two distinct tmexCD-toprJ variants were detected in comparable mobile units with genetic array int-int-hp-hp-tnfxB-tmexCD-toprJ and integrated into separate genetic locations. bla(IMP-4) and bla(NDM-1) were carried by an integron In1377 and a truncated Tn3000, respectively. These findings revealed that the carbapenem and tigecycline resistance genes carried by the two strains were located on mobile elements and might potentially transmit horizontally to additional strains. Furthermore, our findings showed that IncFIB(Mar)/IncHI1B-like plasmids represent a significant reservoir of essential resistance genes that warrants continued monitoring. IMPORTANCE Tigecycline is an essential antibiotic that is used to treat infections caused by carbapenem-resistant Klebsiella pneumoniae (CRKP). The emergence of high-level tigecycline-resistant CRKP poses a serious hazard to human health. This work screened two tigecycline-resistant CRKP strains from clinical patients and found a type of plasmid that encoded carbapenemase and TmexCD-ToprJ in Klebsiella. Importantly, one plasmid cocarried tmexCD-toprJ, bla(NDM-1), and bla(IMP-4), hinting that this plasmid could be a critical vector for superbug development. Furthermore, we discovered that the carbapenem and tigecycline resistance genes are located in mobile units by genetic structure analysis. Our research tracks the formation of clinically super-resistant Gram-negative bacteria.
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spelling pubmed-92416192022-06-30 Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp. Xiao, Tao Peng, Kai Chen, Qi Hou, Xueqin Huang, Weifeng Lv, Hong Yang, Xiaorong Lei, Gaopeng Li, Ruichao Microbiol Spectr Research Article In clinical practice, carbapenems and tigecycline are considered significant options for treating infections caused by multidrug-resistant Klebsiella spp. The continual evolution of resistance mechanisms to carbapenems and tigecycline is shattering the present condition. Meanwhile, convergence of the two resistance mechanisms in a single strain has been reported repeatedly, posing a significant threat to public health and safety. In this study, two carbapenem- and tigecycline-resistant Klebsiella species were obtained from patients and investigated using antimicrobial susceptibility testing, conjugation assay, whole-genome sequencing, and bioinformatics analysis. In Klebsiella variicola FK2020ZBJ35, an untransferable multidrug IncFIB(Mar)/IncHI1B-like plasmid carrying tmexCD2-toprJ2, bla(IMP-4), and bla(NDM-1) was discovered, as was a similar plasmid carrying tmexCD1-toprJ1 and bla(IMP-4) in Klebsiella quasipneumoniae 2019SCSN059. Genetic context analysis found that two distinct tmexCD-toprJ variants were detected in comparable mobile units with genetic array int-int-hp-hp-tnfxB-tmexCD-toprJ and integrated into separate genetic locations. bla(IMP-4) and bla(NDM-1) were carried by an integron In1377 and a truncated Tn3000, respectively. These findings revealed that the carbapenem and tigecycline resistance genes carried by the two strains were located on mobile elements and might potentially transmit horizontally to additional strains. Furthermore, our findings showed that IncFIB(Mar)/IncHI1B-like plasmids represent a significant reservoir of essential resistance genes that warrants continued monitoring. IMPORTANCE Tigecycline is an essential antibiotic that is used to treat infections caused by carbapenem-resistant Klebsiella pneumoniae (CRKP). The emergence of high-level tigecycline-resistant CRKP poses a serious hazard to human health. This work screened two tigecycline-resistant CRKP strains from clinical patients and found a type of plasmid that encoded carbapenemase and TmexCD-ToprJ in Klebsiella. Importantly, one plasmid cocarried tmexCD-toprJ, bla(NDM-1), and bla(IMP-4), hinting that this plasmid could be a critical vector for superbug development. Furthermore, we discovered that the carbapenem and tigecycline resistance genes are located in mobile units by genetic structure analysis. Our research tracks the formation of clinically super-resistant Gram-negative bacteria. American Society for Microbiology 2022-06-01 /pmc/articles/PMC9241619/ /pubmed/35647621 http://dx.doi.org/10.1128/spectrum.00549-22 Text en Copyright © 2022 Xiao 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
Xiao, Tao
Peng, Kai
Chen, Qi
Hou, Xueqin
Huang, Weifeng
Lv, Hong
Yang, Xiaorong
Lei, Gaopeng
Li, Ruichao
Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.
title Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.
title_full Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.
title_fullStr Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.
title_full_unstemmed Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.
title_short Coexistence of tmexCD-toprJ, bla(NDM-1), and bla(IMP-4) in One Plasmid Carried by Clinical Klebsiella spp.
title_sort coexistence of tmexcd-toprj, bla(ndm-1), and bla(imp-4) in one plasmid carried by clinical klebsiella spp.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241619/
https://www.ncbi.nlm.nih.gov/pubmed/35647621
http://dx.doi.org/10.1128/spectrum.00549-22
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