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Structure-based optimization of a non-beta-lactam lead results in inhibitors that do not up-regulate beta-lactamase expression in cell culture
- Source :
- Journal of the American Chemical Society. 127(13)
- Publication Year :
- 2005
-
Abstract
- Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam antibiotics, such as penicillins and cephalosporins. There is a pressing need for novel, non-beta-lactam inhibitors of these enzymes. One previously discovered novel inhibitor of the beta-lactamase AmpC, compound 1, has several favorable properties: it is chemically dissimilar to beta-lactams and is a noncovalent, competitive inhibitor of the enzyme. However, at 26 microM its activity is modest. Using the X-ray structure of the AmpC/1 complex as a template, 14 analogues were designed and synthesized. The most active of these, compound 10, had a K(i) of 1 microM, 26-fold better than the lead. To understand the origins of this improved activity, the structures of AmpC in complex with compound 10 and an analogue, compound 11, were determined by X-ray crystallography to 1.97 and 1.96 A, respectively. Compound 10 was active in cell culture, reversing resistance to the third generation cephalosporin ceftazidime in bacterial pathogens expressing AmpC. In contrast to beta-lactam-based inhibitors clavulanate and cefoxitin, compound 10 did not up-regulate beta-lactamase expression in cell culture but simply inhibited the enzyme expressed by the resistant bacteria. Its escape from this resistance mechanism derives from its dissimilarity to beta-lactam antibiotics.
- Subjects :
- Models, Molecular
bacterial resistance
drug design
crystallography
synthesis
medicine.drug_class
Stereochemistry
Cephalosporin
Carboxylic Acids
Microbial Sensitivity Tests
Thiophenes
Crystallography, X-Ray
Biochemistry
Ceftazidime
Catalysis
beta-Lactamases
Article
Structure-Activity Relationship
Colloid and Surface Chemistry
Bacterial Proteins
Hydrolase
medicine
polycyclic compounds
Structure–activity relationship
Cefoxitin
Enzyme Inhibitors
Beta-Lactamase Inhibitors
chemistry.chemical_classification
biology
Biological activity
General Chemistry
biochemical phenomena, metabolism, and nutrition
Up-Regulation
Enzyme
chemistry
Enzyme inhibitor
biology.protein
beta-Lactamase Inhibitors
Evolving Methods for Macromolecular Crystallography
medicine.drug
Subjects
Details
- ISSN :
- 00027863
- Volume :
- 127
- Issue :
- 13
- Database :
- OpenAIRE
- Journal :
- Journal of the American Chemical Society
- Accession number :
- edsair.doi.dedup.....18c065cc44d7c411d83a7957632ee089