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C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Carbapenemase OXA-23 by Impeding Deacylation

MBio. 2022-04; 
Nichole K Stewart, Marta Toth, Maha A Alqurafi, Weirui Chai, Thu Q Nguyen, Pojun Quan, Mijoon Lee, John D Buynak, Clyde A Smith, Sergei B Vakulenko
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PCR Cloning and Subcloning … AJ009979) was custom-synthesized (GenScript) and cloned between NdeI and HindIII … S71932.1), with their own leader sequences were custom-synthesized (Synbio Technologies) … Get A Quote

Abstract

Acinetobacter baumannii has become a major nosocomial pathogen, as it is often multidrug-resistant, which results in infections characterized by high mortality rates. The bacterium achieves high levels of resistance to β-lactam antibiotics by producing β-lactamases, enzymes which destroy these valuable agents. Historically, the carbapenem family of β-lactam antibiotics have been the drugs of choice for treating A. baumannii infections. However, their effectiveness has been significantly diminished due to the pathogen's production of carbapenem-hydrolyzing class D β-lactamases (CHDLs); thus, new antibiotics and inhibitors of these enzymes are urgently needed. Here, we describe a new carbapenem antibiotic, MA... More

Keywords

Acinetobacter, OXA-23, antibiotic resistance, carbapenem, catalytic mechanism, crystal structure, inhibitor, β-lactamase