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Objectives: Kinetic characterization of TEM-134, a new TEM-type extended-spectrum beta-lactamase variant isolated from Citrobacter koseri during an Italian nationwide survey. TEM-134 is a natural derivative of TEM-2 with the following substitutions: E104K, R164H and G238S.

Methods: Recombinant TEM-134 was purified from Escherichia coli HB101 (pMGP-134) by three chromatographic steps (cation-exchange chromatography, gel permeation and fast chromatofocusing). Steady-state kinetic parameters (K(m) and k(cat)) were determined by measuring substrate hydrolysis under initial rate conditions using the Hanes linearization of the Michaelis-Menten equation. Modelling was carried out using the software Modeller (version 9.1).

Results: TEM-134 hydrolysed with variable efficiency (k(cat)/K(m) ranging from 5 x 10(3) to 8.0 x 10(5) M(-1) . s(-1)) penicillins, narrow-spectrum cephalosporins, cefepime, cefotaxime, ceftazidime and aztreonam, which appeared to be the best substrate. Molecular modelling of the enzyme indicated that the R164H substitution may result in a compromised omega loop in TEM-134 and this may be responsible for its narrower spectrum of activity.

Conclusions: Kinetic data and molecular modelling suggested that R164H has a mild detrimental effect on the global activity of the enzyme.

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http://dx.doi.org/10.1093/jac/dkm275DOI Listing

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Extended-spectrum β-lactamases (ESBLs) belonging to the TEM and SHV families were investigated in 583 ESBL-producing Enterobacteriaceae collected at the clinical microbiology laboratories of 11 teaching Italian hospitals. By molecular analysis TEM-type and SHV-type ESBLs were confirmed on 154 and 74 isolates, respectively. High variability was found among TEM-types β-lactamases with the following variants: TEM-5, TEM-6, TEM-12, TEM-15, TEM-24, TEM-26, TEM-29, TEM-52, TEM-92, TEM-134, and TEM-149.

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Objectives: Kinetic characterization of TEM-134, a new TEM-type extended-spectrum beta-lactamase variant isolated from Citrobacter koseri during an Italian nationwide survey. TEM-134 is a natural derivative of TEM-2 with the following substitutions: E104K, R164H and G238S.

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A new natural TEM derivative with extended-spectrum beta-lactamase activity, TEM-134, was identified in a ceftazidime-resistant clinical isolate of Citrobacter koseri. Compared to TEM-1, TEM-134 contains the following mutations: Q39K, E104K, R164H, and G238S. The bla(TEM-134) gene was not transferable by conjugation and, apparently, was chromosomally encoded.

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