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Transferable AmpCs in Klebsiella pneumoniae: interplay with peptidoglycan recycling, mechanisms of hyperproduction, and virulence implications
Health Research Institute of the Balearic Islands (IdISBa), Palma, Spain; Microbiology Department, University Hospital Son Espases (HUSE), Palma, Spain; Centro de Investigación Biomédica en Red, Área Enfermedades Infecciosas (CIBERINFEC), Instituto de Salud Carlos III (ISCIII), Madrid, Spain.
Health Research Institute of the Balearic Islands (IdISBa), Palma, Spain; Microbiology Department, University Hospital Son Espases (HUSE), Palma, Spain; Centro de Investigación Biomédica en Red, Área Enfermedades Infecciosas (CIBERINFEC), Instituto de Salud Carlos III (ISCIII), Madrid, Spain.
Health Research Institute of the Balearic Islands (IdISBa), Palma, Spain; Microbiology Department, University Hospital Son Espases (HUSE), Palma, Spain; Centro de Investigación Biomédica en Red, Área Enfermedades Infecciosas (CIBERINFEC), Instituto de Salud Carlos III (ISCIII), Madrid, Spain.
Health Research Institute of the Balearic Islands (IdISBa), Palma, Spain.
Vise andre og tillknytning
2024 (engelsk)Inngår i: Antimicrobial Agents and Chemotherapy, ISSN 0066-4804, E-ISSN 1098-6596, Vol. 68, nr 5, artikkel-id e0131523Artikkel i tidsskrift (Fagfellevurdert) Published
Abstract [en]

Chromosomal and transferable AmpC β-lactamases represent top resistance mechanisms in different gram-negatives, but knowledge regarding the latter, mostly concerning regulation and virulence-related implications, is far from being complete. To fill this gap, we used Klebsiella pneumoniae (KP) and two different plasmid-encoded AmpCs [DHA-1 (AmpR regulator linked, inducible) and CMY-2 (constitutive)] as models to perform a study in which we show that blockade of peptidoglycan recycling through AmpG permease inactivation abolished DHA-1 inducibility but did not affect CMY-2 production and neither did it alter KP pathogenic behavior. Moreover, whereas regular production of both AmpC-type enzymes did not attenuate KP virulence, when blaDHA-1 was expressed in an ampG-defective mutant, Galleria mellonella killing was significantly (but not drastically) attenuated. Spontaneous DHA-1 hyperproducer mutants were readily obtained in vitro, showing slight or insignificant virulence attenuations together with high-level resistance to β-lactams only mildly affected by basal production (e.g., ceftazidime, ceftolozane/tazobactam). By analyzing diverse DHA-1-harboring clinical KP strains, we demonstrate that the natural selection of these hyperproducers is not exceptional (>10% of the collection), whereas mutational inactivation of the typical AmpC hyperproduction-related gene mpl was the most frequent underlying mechanism. The potential silent dissemination of this kind of strains, for which an important fitness cost-related contention barrier does not seem to exist, is envisaged as a neglected threat for most β-lactams effectiveness, including recently introduced combinations. Analyzing whether this phenomenon is applicable to other transferable β-lactamases and species as well as determining the levels of conferred resistance poses an essential topic to be addressed.

sted, utgiver, år, opplag, sider
American Society for Microbiology, 2024. Vol. 68, nr 5, artikkel-id e0131523
Emneord [en]
AmpR regulator, blaCMY-2, blaDHA-1, Galleria mellonella, Klebsiella pneumoniae, peptidoglycan recycling, transferable AmpC β-lactamases, virulence
HSV kategori
Identifikatorer
URN: urn:nbn:se:umu:diva-225507DOI: 10.1128/aac.01315-23ISI: 001189246500001PubMedID: 38517189Scopus ID: 2-s2.0-85189494485OAI: oai:DiVA.org:umu-225507DiVA, id: diva2:1867085
Forskningsfinansiär
European Regional Development Fund (ERDF)Tilgjengelig fra: 2024-06-10 Laget: 2024-06-10 Sist oppdatert: 2024-07-12bibliografisk kontrollert

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