The clinically used inhibitors tazobactam and sulbactam are effective in the inhibition of activity of class A beta-lactamases, but not for class D beta-lactamases. The two inhibitors exhibit a complex multistep profile for their chemistry of inhibition with class A beta-lactamases. To compare the inhibition profiles for class A and D enzymes, the reactions were investigated within OXA-10 beta-lactamase (a class D enzyme) crystals using a Raman microscope. The favored reaction pathway appears to be distinctly different from that for class A beta-lactamases. In contrast to the case of class A enzymes that favor the formation of a key enamine species, the OXA-10 enzyme forms an alpha,beta-unsaturated acrylate (acid or ester). Quantum mechanical calculations support the likely product as the adduct of Ser115 to the acrylate. Few enamine-like species are formed by sulbactam or tazobactam with this enzyme. Taken together, our results show that the facile conversion of the initial imine, formed upon acylation of the active site Ser67, to the cis- and/or trans-enamine is disfavored. Instead, there is a significant population of the imine that could either experience cross-linking to a second nucleophile (e.g., Ser115) or give rise to the alpha,beta-unsaturated product and permanent inhibition. Alternatively, the imine can undergo hydrolysis to regenerate the catalytically active OXA-10 enzyme. This last process is the dominant one for class D beta-lactamases since the enzyme is not effectively inhibited. In contrast to sulbactam and tazobactam, the reactions between oxacillin or 6alpha-hydroxyisopropylpenicillinate (both substrates) and OXA-10 beta-lactamase appear much less complex. These compounds lead to a single acyl-enzyme species, the presence of which was confirmed by Raman and MALDI-TOF experiments.
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http://dx.doi.org/10.1021/bi702348w | DOI Listing |
Microbiol Spectr
December 2024
Zhejiang Provincial People's Hospital, People's Hospital of Hangzhou Medical College, Hangzhou, Zhejiang, China.
Unlabelled: Carbapenem-resistant spp. pose a significant challenge in clinical settings due to limited treatment options for nosocomial infections. Carbapenem-hydrolyzing class D beta-lactamases are the primary cause for carbapenem resistance, while metallo-beta-lactamases (MBLs) New Delhi metallo beta-lactamase (NDM) and imipenemase (IMP) also contribute.
View Article and Find Full Text PDFJ Glob Antimicrob Resist
December 2024
Servicio Antimicrobianos, INEI-ANLIS ''Dr. Carlos G. Malbrán''. National and Regional Reference Laboratory for Antimicrobial Resistance (NRRLAR). Buenos Aires, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET). Electronic address:
Background: The OXA-48-like enzymes are members of the class D β-lactamases, primarily detected in Enterobacterales, with the capacity to hydrolyze carbapenems. The allelic variant bla, which has low hydrolytic activity towards carbapenemes, was detected in Argentina in 2011 and spread successfully since then, giving sporadic origin to novel local variants.
Aim: To study the phenotypic profile and the dissemination strategies of two novel OXA enzymes, bla and bla, harbored in Escherichia coli M17224 and Klebsiella pneumoniae M21014, isolated from two pediatric patients.
J Enzyme Inhib Med Chem
December 2025
Department of Biological Sciences, Konkuk University, Seoul, Republic of Korea.
β-lactams have been the most successful antibiotics, but the rise of multi-drug resistant (MDR) bacteria threatens their effectiveness. Serine β-lactamases (SBLs), among the most common causes of resistance, are classified as A, C, and D, with numerous variants complicating structural and substrate spectrum comparisons. This study compares representative SBLs of these classes, focusing on the substrate-binding pocket (SBP).
View Article and Find Full Text PDFInt J Antimicrob Agents
December 2024
Department of Life Sciences, Centre for Functional Ecology, Associate Laboratory TERRA, Faculty of Sciences and Technology, University of Coimbra, 3000-456, Coimbra, Portugal.
Integrons mediate the acquisition and expression of gene cassettes (GCs). The production of beta-lactamases (BLs) is the most relevant mechanism of beta-lactams resistance. To explore the role of integrons in BL genes dissemination, we retrieved sequences and metadata from the INTEGRALL database and performed literature review.
View Article and Find Full Text PDFEur J Clin Microbiol Infect Dis
December 2024
Medical and Molecular Microbiology, Faculty of Science and Medicine, University of Fribourg, Fribourg, Switzerland.
Proteus mirabilis is a Gram-negative bacterium found in the environment and also forms part of the commensal flora in the gastrointestinal tract of both humans and animals. P. mirabilis can cause a wide variety of infections, however it does not harbor any intrinsic β-lactamase genes and as such usually exhibits full susceptibility to β-lactams with the exception of imipenem, to which it is naturally resistant.
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