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J Biol Chem ; 276(48): 45015-23, 2001 Nov 30.
Article in English | MEDLINE | ID: mdl-11564740

ABSTRACT

Resistance to beta-lactam antibiotics mediated by metallo-beta-lactamases is an increasingly worrying clinical problem. Candidate inhibitors include mercaptocarboxylic acids, and we report studies of a simple such compound, thiomandelic acid. A series of 35 analogues were synthesized and examined as metallo-beta-lactamase inhibitors. The K(i) values (Bacillus cereus enzyme) are 0.09 microm for R-thiomandelic acid and 1.28 microm for the S-isomer. Structure-activity relationships show that the thiol is essential for activity and the carboxylate increases potency; the affinity is greatest when these groups are close together. Thioesters of thiomandelic acid are substrates for the enzyme, liberating thiomandelic acid, suggesting a starting point for the design of "pro-drugs." Importantly, thiomandelic acid is a broad spectrum inhibitor of metallo-beta-lactamases, with a submicromolar K(i) value for all nine enzymes tested, except the Aeromonas hydrophila enzyme; such a wide spectrum of activity is unprecedented. The binding of thiomandelic acid to the B. cereus enzyme was studied by NMR; the results are consistent with the idea that the inhibitor thiol binds to both zinc ions, while its carboxylate binds to Arg(91). Amide chemical shift perturbations for residues 30-40 (the beta(3)-beta(4) loop) suggest that this small inhibitor induces a movement of this loop of the kind seen for other larger inhibitors.


Subject(s)
Enzyme Inhibitors/pharmacology , Mandelic Acids/chemistry , Mandelic Acids/metabolism , Sulfhydryl Compounds/chemistry , Sulfhydryl Compounds/metabolism , Zinc/metabolism , beta-Lactamase Inhibitors , Arginine/chemistry , Binding Sites , Kinetics , Magnetic Resonance Spectroscopy , Mandelic Acids/chemical synthesis , Models, Chemical , Models, Molecular , Protein Binding , Spectrophotometry , Structure-Activity Relationship , Sulfhydryl Compounds/chemical synthesis , Zinc/chemistry
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