Synthesis of a Novel Boronic Acid Transition State Inhibitor, MB076: A Heterocyclic Triazole Effectively Inhibits Acinetobacter-Derived Cephalosporinase Variants with an Expanded-Substrate Spectrum

Class C Acinetobacter-derived cephalosporinases (ADCs) represent an important target for inhibition in the multidrug-resistant pathogen Acinetobacter baumannii. Many ADC variants have emerged, and characterization of their structural and functional differences is essential. Equally as important is t...

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Veröffentlicht in:Journal of medicinal chemistry 2023-07, Vol.66 (13), p.8510-8525
Hauptverfasser: Powers, Rachel A., June, Cynthia M., Fernando, Micah C., Fish, Erin R., Maurer, Olivia L., Baumann, Rachelle M., Beardsley, Trevor J., Taracila, Magdalena A., Rudin, Susan D., Hujer, Kristine M., Hujer, Andrea M., Santi, Nicolò, Villamil, Valentina, Introvigne, Maria Luisa, Prati, Fabio, Caselli, Emilia, Bonomo, Robert A., Wallar, Bradley J.
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Sprache:eng
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Zusammenfassung:Class C Acinetobacter-derived cephalosporinases (ADCs) represent an important target for inhibition in the multidrug-resistant pathogen Acinetobacter baumannii. Many ADC variants have emerged, and characterization of their structural and functional differences is essential. Equally as important is the development of compounds that inhibit all prevalent ADCs despite these differences. The boronic acid transition state inhibitor, MB076, a novel heterocyclic triazole with improved plasma stability, was synthesized and inhibits seven different ADC β-lactamase variants with K i values
ISSN:0022-2623
1520-4804
DOI:10.1021/acs.jmedchem.3c00144