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Structural Basis of Metallo-Β-lactamase, Serine-Β-lactamase and Penicillin-Binding Protein Inhibition by Cyclic Boronates

Nature Communications(2016)

Cited 190|Views12
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Abstract
β-Lactamases enable resistance to almost all β-lactam antibiotics. Pioneering work revealed that acyclic boronic acids can act as 'transition state analogue' inhibitors of nucleophilic serine enzymes, including serine-β-lactamases. Here we report biochemical and biophysical analyses revealing that cyclic boronates potently inhibit both nucleophilic serine and zinc-dependent β-lactamases by a mechanism involving mimicking of the common tetrahedral intermediate. Cyclic boronates also potently inhibit the non-essential penicillin-binding protein PBP 5 by the same mechanism of action. The results open the way for development of dual action inhibitors effective against both serine- and metallo-β-lactamases, and which could also have antimicrobial activity through inhibition of PBPs.
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Enzymes,Structural biology,Science,Humanities and Social Sciences,multidisciplinary
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