The MOX lineage of beta-lactamases includes a group of molecular class C enzymes (AmpCs) encoded by genes mobilized from the chromosomes of Aeromonas spp. to plasmids. MOX-9, previously identified as a plasmid-encoded enzyme from a Citrobacter freundii isolate, belongs to a novel sublineage of MOX enzymes, derived from the resident Aeromonas media AmpC. The bla(MOX-9) gene was found to be carried on a transposon, named Tn7469, likely responsible for its mobilization to plasmidic context. MOX-9 was overexpressed in Escherichia coli, purified, and subjected to biochemical characterization. Kinetic analysis showed a relatively narrow-spectrum profile with strong preference for cephalosporin substrates, with some differences compared with MOX-1 and MOX-2. MOX-9 was not inhibited by clavulanate and sulbactam, while both tazobactam and avibactam acted as inhibitors in the micromolar range.

Piccirilli, A., Antonelli, A., D'Andrea, M.m., Cherubini, S., Perilli, M., Rossolini, G.m. (2022). Molecular and Kinetic Characterization of MOX-9, a Plasmid-Mediated Enzyme Representative of a Novel Sublineage of MOX-Type Class C β-Lactamases. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 66(9) [10.1128/aac.00595-22].

Molecular and Kinetic Characterization of MOX-9, a Plasmid-Mediated Enzyme Representative of a Novel Sublineage of MOX-Type Class C β-Lactamases

D'Andrea, Marco Maria;
2022-01-01

Abstract

The MOX lineage of beta-lactamases includes a group of molecular class C enzymes (AmpCs) encoded by genes mobilized from the chromosomes of Aeromonas spp. to plasmids. MOX-9, previously identified as a plasmid-encoded enzyme from a Citrobacter freundii isolate, belongs to a novel sublineage of MOX enzymes, derived from the resident Aeromonas media AmpC. The bla(MOX-9) gene was found to be carried on a transposon, named Tn7469, likely responsible for its mobilization to plasmidic context. MOX-9 was overexpressed in Escherichia coli, purified, and subjected to biochemical characterization. Kinetic analysis showed a relatively narrow-spectrum profile with strong preference for cephalosporin substrates, with some differences compared with MOX-1 and MOX-2. MOX-9 was not inhibited by clavulanate and sulbactam, while both tazobactam and avibactam acted as inhibitors in the micromolar range.
2022
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/19 - MICROBIOLOGIA GENERALE
Settore MED/07 - MICROBIOLOGIA E MICROBIOLOGIA CLINICA
English
Con Impact Factor ISI
MOX
enzyme kineticss
β-lactamases
Bacterial Proteins
Cephalosporins
Clavulanic Acid
Kinetics
Plasmids
Tazobactam
Sulbactam
beta-Lactamases
Piccirilli, A., Antonelli, A., D'Andrea, M.m., Cherubini, S., Perilli, M., Rossolini, G.m. (2022). Molecular and Kinetic Characterization of MOX-9, a Plasmid-Mediated Enzyme Representative of a Novel Sublineage of MOX-Type Class C β-Lactamases. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 66(9) [10.1128/aac.00595-22].
Piccirilli, A; Antonelli, A; D'Andrea, Mm; Cherubini, S; Perilli, M; Rossolini, Gm
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/308117
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