4.7 Article

Molecular Characterization of Carbapenemase-Producing Pseudomonas aeruginosa of Czech Origin and Evidence for Clonal Spread of Extensively Resistant Sequence Type 357 Expressing IMP-7 Metallo-β-Lactamase

Journal

ANTIMICROBIAL AGENTS AND CHEMOTHERAPY
Volume 61, Issue 12, Pages -

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/AAC.01811-17

Keywords

VIM; GES; ST235; ST111; Illumina sequencing; class 1 integrons; genomic islands (GIs); integrative conjugative element (ICE)

Funding

  1. Medical Research Foundation of the Czech Republic [15-28663A]
  2. National Sustainability Program I (NPU I) by the Ministry of Education, Youth, and Sports of the Czech Republic [LO1503]
  3. Charles University [P36]

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The objective of this study was to perform molecular surveillance for assessing the spread of carbapenemase-producing Pseudomonas aeruginosa in Czech hospitals. One hundred thirty-six carbapenemase-producing isolates were recovered from 22 hospitals located throughout the country. Sequence type 357 (ST357) dominated (n = 120) among carbapenemase producers. One hundred seventeen isolates produced IMP-type (IMP-7 [n = 116] and IMP-1 [n = 1]) metallo-beta-lactamases (M beta Ls), 15 produced the VIM-2 M beta L, and the remaining isolates expressed the GES-5 enzyme. The bla(IMP)-like genes were located in three main integron types, with In-p110-like being the most prevalent (n = 115). The two other IMP-encoding integrons (In1392 and In1393) have not been described previously. bla(VIM-2)-carrying integrons included In59-like, In56, and a novel element (In1391). bla(GES-5) was carried by In717. Sequencing data showed that In-p110-like was associated with a Tn4380-like transposon inserted in genomic island LESGI-3 in the P. aeruginosa chromosome. The other integrons were also integrated into the P. aeruginosa chromosome. These findings indicated the clonal spread of ST357 P. aeruginosa, carrying the IMP-7-encoding integron In-p110, in Czech hospitals. Additionally, the sporadic emergence of P. aeruginosa producing different carbapenemase types, associated with divergent or novel integrons, punctuated the ongoing evolution of these bacteria.

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