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Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa

Resistance to antipseudomonal penicillins and cephalosporins is often driven by the overproduction of the intrinsic β-lactamase AmpC. However, OXA-10-family β-lactamases are a rich source of resistance in Pseudomonas aeruginosa. OXA β-lactamases have a propensity for mutation that leads to extended...

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Autores principales: Pincus, Nathan B., Rosas-Lemus, Monica, Gatesy, Samuel W. M., Bertucci, Hanna K., Brunzelle, Joseph S., Minasov, George, Shuvalova, Ludmilla A., Lebrun-Corbin, Marine, Satchell, Karla J. F., Ozer, Egon A., Hauser, Alan R., Bachta, Kelly E. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9578422/
https://www.ncbi.nlm.nih.gov/pubmed/36129295
http://dx.doi.org/10.1128/aac.00985-22
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author Pincus, Nathan B.
Rosas-Lemus, Monica
Gatesy, Samuel W. M.
Bertucci, Hanna K.
Brunzelle, Joseph S.
Minasov, George
Shuvalova, Ludmilla A.
Lebrun-Corbin, Marine
Satchell, Karla J. F.
Ozer, Egon A.
Hauser, Alan R.
Bachta, Kelly E. R.
author_facet Pincus, Nathan B.
Rosas-Lemus, Monica
Gatesy, Samuel W. M.
Bertucci, Hanna K.
Brunzelle, Joseph S.
Minasov, George
Shuvalova, Ludmilla A.
Lebrun-Corbin, Marine
Satchell, Karla J. F.
Ozer, Egon A.
Hauser, Alan R.
Bachta, Kelly E. R.
author_sort Pincus, Nathan B.
collection PubMed
description Resistance to antipseudomonal penicillins and cephalosporins is often driven by the overproduction of the intrinsic β-lactamase AmpC. However, OXA-10-family β-lactamases are a rich source of resistance in Pseudomonas aeruginosa. OXA β-lactamases have a propensity for mutation that leads to extended spectrum cephalosporinase and carbapenemase activity. In this study, we identified isolates from a subclade of the multidrug-resistant (MDR) high risk P. aeruginosa clonal complex CC446 with a resistance to ceftazidime. A genomic analysis revealed that these isolates harbored a plasmid containing a novel allele of bla(OXA-10), named bla(OXA-935), which was predicted to produce an OXA-10 variant with two amino acid substitutions: an aspartic acid instead of a glycine at position 157 and a serine instead of a phenylalanine at position 153. The G157D mutation, present in OXA-14, is associated with the resistance of P. aeruginosa to ceftazidime. Compared to OXA-14, OXA-935 showed increased catalytic efficiency for ceftazidime. The deletion of bla(OXA-935) restored the sensitivity to ceftazidime, and susceptibility profiling of P. aeruginosa laboratory strains expressing bla(OXA-935) revealed that OXA-935 conferred ceftazidime resistance. To better understand the impacts of the variant amino acids, we determined the crystal structures of OXA-14 and OXA-935. Compared to OXA-14, the F153S mutation in OXA-935 conferred increased flexibility in the omega (Ω) loop. Amino acid changes that confer extended spectrum cephalosporinase activity to OXA-10-family β-lactamases are concerning, given the rising reliance on novel β-lactam/β-lactamase inhibitor combinations, such as ceftolozane-tazobactam and ceftazidime-avibactam, to treat MDR P. aeruginosa infections.
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spelling pubmed-95784222022-10-19 Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa Pincus, Nathan B. Rosas-Lemus, Monica Gatesy, Samuel W. M. Bertucci, Hanna K. Brunzelle, Joseph S. Minasov, George Shuvalova, Ludmilla A. Lebrun-Corbin, Marine Satchell, Karla J. F. Ozer, Egon A. Hauser, Alan R. Bachta, Kelly E. R. Antimicrob Agents Chemother Mechanisms of Resistance Resistance to antipseudomonal penicillins and cephalosporins is often driven by the overproduction of the intrinsic β-lactamase AmpC. However, OXA-10-family β-lactamases are a rich source of resistance in Pseudomonas aeruginosa. OXA β-lactamases have a propensity for mutation that leads to extended spectrum cephalosporinase and carbapenemase activity. In this study, we identified isolates from a subclade of the multidrug-resistant (MDR) high risk P. aeruginosa clonal complex CC446 with a resistance to ceftazidime. A genomic analysis revealed that these isolates harbored a plasmid containing a novel allele of bla(OXA-10), named bla(OXA-935), which was predicted to produce an OXA-10 variant with two amino acid substitutions: an aspartic acid instead of a glycine at position 157 and a serine instead of a phenylalanine at position 153. The G157D mutation, present in OXA-14, is associated with the resistance of P. aeruginosa to ceftazidime. Compared to OXA-14, OXA-935 showed increased catalytic efficiency for ceftazidime. The deletion of bla(OXA-935) restored the sensitivity to ceftazidime, and susceptibility profiling of P. aeruginosa laboratory strains expressing bla(OXA-935) revealed that OXA-935 conferred ceftazidime resistance. To better understand the impacts of the variant amino acids, we determined the crystal structures of OXA-14 and OXA-935. Compared to OXA-14, the F153S mutation in OXA-935 conferred increased flexibility in the omega (Ω) loop. Amino acid changes that confer extended spectrum cephalosporinase activity to OXA-10-family β-lactamases are concerning, given the rising reliance on novel β-lactam/β-lactamase inhibitor combinations, such as ceftolozane-tazobactam and ceftazidime-avibactam, to treat MDR P. aeruginosa infections. American Society for Microbiology 2022-09-21 /pmc/articles/PMC9578422/ /pubmed/36129295 http://dx.doi.org/10.1128/aac.00985-22 Text en Copyright © 2022 Pincus 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 Mechanisms of Resistance
Pincus, Nathan B.
Rosas-Lemus, Monica
Gatesy, Samuel W. M.
Bertucci, Hanna K.
Brunzelle, Joseph S.
Minasov, George
Shuvalova, Ludmilla A.
Lebrun-Corbin, Marine
Satchell, Karla J. F.
Ozer, Egon A.
Hauser, Alan R.
Bachta, Kelly E. R.
Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa
title Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa
title_full Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa
title_fullStr Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa
title_full_unstemmed Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa
title_short Functional and Structural Characterization of OXA-935, a Novel OXA-10-Family β-Lactamase from Pseudomonas aeruginosa
title_sort functional and structural characterization of oxa-935, a novel oxa-10-family β-lactamase from pseudomonas aeruginosa
topic Mechanisms of Resistance
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9578422/
https://www.ncbi.nlm.nih.gov/pubmed/36129295
http://dx.doi.org/10.1128/aac.00985-22
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