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Cyclobutanone analogues of beta-lactams revisited: insights into conformational requirements for inhibition of serine- and metallo-beta-lactamases. | LitMetric

AI Article Synopsis

  • The main mode of bacterial resistance to beta-lactam antibiotics is through beta-lactamases, leading to the development of new cyclobutanone analogues of penams and penems that inhibit these enzymes.
  • Inhibition effectiveness is greater when the C4 carboxylate group in these compounds is in an equatorial position rather than an axial one, as supported by molecular modeling studies.
  • An unsaturated penem analogue has shown improved efficacy against certain carbapenem-resistant bacteria, indicating that these cyclobutanones are promising candidates for practical use as reversible inhibitors of various beta-lactamases.

Article Abstract

The most important mode of bacterial resistance to beta-lactam antibiotics is the expression of beta-lactamases. New cyclobutanone analogues of penams and penems have been prepared and evaluated for inhibition of class A, B, C, and D beta-lactamases. Inhibitors which favor conformations in which the C4 carboxylate is equatorial were found to be more potent than those in which the carboxylate is axial, and molecular modeling studies with enzyme-inhibitor complexes indicate that an equatorial orientation of the carboxylate is required for binding to beta-lactamases. An X-ray structure of OXA-10 complexed with a cyclobutanone confirms that a serine hemiketal is formed in the active site and that the inhibitor adopts the exo envelope. An unsaturated penem analogue was also found to enhance the potency of meropenem against carbapenem-resistant MBL-producing strains of Chryseobacterium meningosepticum and Stenotrophomonas maltophilia. These cyclobutanones represent the first type of reversible inhibitors to show moderate (low micromolar) inhibition of both serine- and metallo-beta-lactamases and should be considered for further development into practical inhibitors.

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http://dx.doi.org/10.1021/ja9086374DOI Listing

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