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,...
Benzo[b]thiophene-2-ylboronic acid, 1, is a 27 nM inhibitor of the class C beta-lactamase AmpC and p...
Benzo[b]thiophene-2-ylboronic acid, 1, is a 27 nM inhibitor of the class C beta-lactamase AmpC and p...
Background: Group I p-lactamases are a major cause of antibiotic resistance to beta -lactams such as...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of -lactamases is the most widespread resistance mechanism to -lactam antibio...
Bacterial expression of -lactamases is the most widespread resistance mechanism to -lactam antibio...
Bacterial resistance represents a worldwide emergency threatening the efficacy of all available anti...
Bacterial resistance represents a worldwide emergency threatening the efficacy of all available anti...
beta-lactamases are the most widespread resistance mechanism to beta-lactam antibiotics, such as the...
Abstractβ-lactamases are the most widespread resistance mechanisms to β-lactam antibiotics, and ther...
Abstractβ-lactamases are the most widespread resistance mechanisms to β-lactam antibiotics, and ther...
Benzo[b]thiophene-2-ylboronic acid, 1, is a 27 nM inhibitor of the class C beta-lactamase AmpC and p...
Benzo[b]thiophene-2-ylboronic acid, 1, is a 27 nM inhibitor of the class C beta-lactamase AmpC and p...
Background: Group I p-lactamases are a major cause of antibiotic resistance to beta -lactams such as...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of beta-lactamases is the most widespread resistance mechanism to beta-lactam a...
Bacterial expression of -lactamases is the most widespread resistance mechanism to -lactam antibio...
Bacterial expression of -lactamases is the most widespread resistance mechanism to -lactam antibio...
Bacterial resistance represents a worldwide emergency threatening the efficacy of all available anti...
Bacterial resistance represents a worldwide emergency threatening the efficacy of all available anti...
beta-lactamases are the most widespread resistance mechanism to beta-lactam antibiotics, such as the...
Abstractβ-lactamases are the most widespread resistance mechanisms to β-lactam antibiotics, and ther...
Abstractβ-lactamases are the most widespread resistance mechanisms to β-lactam antibiotics, and ther...
Benzo[b]thiophene-2-ylboronic acid, 1, is a 27 nM inhibitor of the class C beta-lactamase AmpC and p...
Benzo[b]thiophene-2-ylboronic acid, 1, is a 27 nM inhibitor of the class C beta-lactamase AmpC and p...
Background: Group I p-lactamases are a major cause of antibiotic resistance to beta -lactams such as...