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Structure-Guided Design of Cell Wall Biosynthesis Inhibitors That Overcome beta-Lactam Resistance in Staphylococcus aureus (MRSA)

  作者 CONTRERASMARTEL CARLOS; AMOROSO ANA; WOON ESTHER C Y; ZERVOSEN ASTRID; INGLIS STEVEN; MARTINS ALEXANDRE; VERLAINE OLIVIER; RYDZIK ANNA M; JOB VIVIANA; LUXEN ANDRE; JORIS BERNARD; SCHOFIELD CHRISTOPHER J; DESSEN ANDREA  
  选自 期刊  ACS CHEMICAL BIOLOGY;  卷期  2011年6-9;  页码  943-951  
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[摘要]beta-Lactam antibiotics have long been a treatment of choice for bacterial infections since they bind irreversibly to Penicillin-Binding Proteins (PBPs), enzymes that are vital for cell wall biosynthesis. Many pathogens express drug-insensitive PBPs rendering beta-lactams ineffective, revealing a need for new types of PBP inhibitors active against resistant strains. We have identified alkyl boronic acids that are active against pathogens including methicillin-resistant S. aureus (MRSA). The crystal sturctures of PBP1b complexed to 11 differently alkyl boronates demonstrate that in vivo efficacy correlates with the mode of inhibitor side chain binding. Staphylococcal membrane analyses reveal that the most potent alkyl boronate targets PBP1, an autolysis system regulator, and PBP2a, a low beta-lactam affinity enzyme. This work demonstrate the potential of boronate-based PBP inhibitors for circumventing beta-lactam resistance and opens avenues for the development of novel antibiotics that target Gram-positive pathogens.

 
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