Literature DB >> 33753332

Antimicrobial Resistance Conferred by OXA-48 β-Lactamases: Towards a Detailed Mechanistic Understanding.

Viivi H A Hirvonen1,2, James Spencer3, Marc W van der Kamp1,2.   

Abstract

OXA-48-type β-lactamases are now routinely encountered in bacterial infections caused by carbapenem-resistant Enterobacterales These enzymes are of high and growing clinical significance due to the importance of carbapenems in treatment of health care-associated infections by Gram-negative bacteria, the wide and increasing dissemination of OXA-48 enzymes on plasmids, and the challenges posed by their detection. OXA-48 confers resistance to penicillin (which is efficiently hydrolyzed) and carbapenem antibiotics (which is more slowly broken down). In addition to the parent enzyme, a growing array of variants of OXA-48 is now emerging. The spectrum of activity of these variants varies, with some hydrolyzing expanded-spectrum oxyimino-cephalosporins. The growth in importance and diversity of the OXA-48 group has motivated increasing numbers of studies that aim to elucidate the relationship between structure and specificity and establish the mechanistic basis for β-lactam turnover in this enzyme family. In this review, we collate recently published structural, kinetic, and mechanistic information on the interactions between clinically relevant β-lactam antibiotics and inhibitors and OXA-48 β-lactamases. Collectively, these studies are starting to form a detailed picture of the underlying bases for the differences in β-lactam specificity between OXA-48 variants and the consequent differences in resistance phenotype. We focus specifically on aspects of carbapenemase and cephalosporinase activities of OXA-48 β-lactamases and discuss β-lactamase inhibitor development in this context. Throughout the review, we also outline key open research questions for future investigation.
Copyright © 2021 American Society for Microbiology.

Entities:  

Keywords:  OXA-48; antibiotic resistance; β-lactamases

Year:  2021        PMID: 33753332     DOI: 10.1128/AAC.00184-21

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  3 in total

1.  Multiscale Simulations Identify Origins of Differential Carbapenem Hydrolysis by the OXA-48 β-Lactamase.

Authors:  Viivi H A Hirvonen; Tal Moshe Weizmann; Adrian J Mulholland; James Spencer; Marc W van der Kamp
Journal:  ACS Catal       Date:  2022-04-04       Impact factor: 13.700

2.  In vitro activity of the orally bioavailable ceftibuten/VNRX-7145 (VNRX-5236 etzadroxil) combination against a challenge set of Enterobacterales pathogens carrying molecularly characterized β-lactamase genes.

Authors:  Rodrigo E Mendes; Paul R Rhomberg; Amy A Watters; Mariana Castanheira
Journal:  J Antimicrob Chemother       Date:  2022-02-23       Impact factor: 5.790

3.  Correlation between Identification of β-Lactamase Resistance Genes and Antimicrobial Susceptibility Profiles in Gram-Negative Bacteria: a Laboratory Data Analysis.

Authors:  Ammara Mushtaq; Rachel Chasan; Michael D Nowak; Meenakshi Rana; Sahrish Ilyas; Alberto E Paniz-Mondolfi; Emilia M Sordillo; Gopi Patel; Melissa R Gitman
Journal:  Microbiol Spectr       Date:  2022-03-07
  3 in total

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