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Click Chemistry in Lead Optimization of Boronic Acids as ?-Lactamase Inhibitors.


ABSTRACT: Boronic acid transition-state inhibitors (BATSIs) represent one of the most promising classes of ?-lactamase inhibitors. Here we describe a new class of BATSIs, namely, 1-amido-2-triazolylethaneboronic acids, which were synthesized by combining the asymmetric homologation of boronates with copper-catalyzed azide-alkyne cycloaddition for the stereoselective insertion of the amido group and the regioselective formation of the 1,4-disubstituted triazole, respectively. This synthetic pathway, which avoids intermediate purifications, proved to be flexible and efficient, affording in good yields a panel of 14 BATSIs bearing three different R1 amide side chains (acetamido, benzylamido, and 2-thienylacetamido) and several R substituents on the triazole. This small library was tested against two clinically relevant class C ?-lactamases from Enterobacter spp. and Pseudomonas aeruginosa. The K(i) value of the best compound (13a) was as low as 4 nM with significant reduction of bacterial resistance to the combination of cefotaxime/13a.

SUBMITTER: Caselli E 

PROVIDER: S-EPMC5744665 | biostudies-literature | 2015 Jul

REPOSITORIES: biostudies-literature

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Click Chemistry in Lead Optimization of Boronic Acids as β-Lactamase Inhibitors.

Caselli Emilia E   Romagnoli Chiara C   Vahabi Roza R   Taracila Magdalena A MA   Bonomo Robert A RA   Prati Fabio F  

Journal of medicinal chemistry 20150710 14


Boronic acid transition-state inhibitors (BATSIs) represent one of the most promising classes of β-lactamase inhibitors. Here we describe a new class of BATSIs, namely, 1-amido-2-triazolylethaneboronic acids, which were synthesized by combining the asymmetric homologation of boronates with copper-catalyzed azide-alkyne cycloaddition for the stereoselective insertion of the amido group and the regioselective formation of the 1,4-disubstituted triazole, respectively. This synthetic pathway, which  ...[more]

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