International audienceOXA-48-producing Enterobacterales have now widely disseminated globally. A sign of their extensive spread is the identification of an increasing number of OXA-48 variants. Among them, three are particularly interesting, OXA-163, OXA-247 and OXA-405, since they have lost carbapenem activities and gained expanded-spectrum cephalosporin hydrolytic activity subsequent to a four amino-acid (AA) deletion in the β5-β6 loop. We investigated the mechanisms responsible for substrate specificity of OXA-405. Kinetic parameters confirmed that OXA-405 has a hydrolytic profile compatible with an ESBL (hydrolysis of expanded spectrum cephalosporins and susceptibility to class A inhibitors). Molecular modeling techniques and 3D structu...
The crystal structure of the class D β-lactamase OXA-436 was solved to a resolution of 1.80 Å. Highe...
Antibiotic resistance is being recognized as a world-wide crisis in modern medicine, rapidly outpaci...
Our understanding of how antimicrobial resistance enzymes evolve to expand their substrate spectrum ...
OXA-163 and OXA-48 are closely related class D β-lactamases that exhibit different substrate profile...
SummaryCarbapenem-hydrolyzing class D β-lactamases (CHDLs) are enzymes found in important Gram-negat...
Objectives Carbapenem-hydrolysing class D β-lactamases of the OXA-48 type are increasingly reported ...
Class D β-lactamase OXA-48 is widely distributed among Gram-negative bacteria and is an important de...
Objectives: Carbapenem-hydrolysing class D β-lactamases of the OXA-48 type are increasingly reporte...
Our understanding of how antimicrobial resistance enzymes evolve to expand their substrate spectrum ...
International audienceOXA-48-producing Enterobacterales have now widely disseminated throughout the ...
International audienceOXA-48-producing Enterobacterales have now widely disseminated throughout the ...
International audienceOXA-48-producing Enterobacterales have now widely disseminated throughout the ...
β-lactam antibiotics, such as penicillin, are the biochemical key to preventing bacterial infections...
peer reviewedCarbapenem-hydrolyzing class D β-lactamases (CHDLs) are enzymes found in important Gram...
Antimicrobial resistance, primarily caused by the overuse of antimicrobials such as antibiotics, is ...
The crystal structure of the class D β-lactamase OXA-436 was solved to a resolution of 1.80 Å. Highe...
Antibiotic resistance is being recognized as a world-wide crisis in modern medicine, rapidly outpaci...
Our understanding of how antimicrobial resistance enzymes evolve to expand their substrate spectrum ...
OXA-163 and OXA-48 are closely related class D β-lactamases that exhibit different substrate profile...
SummaryCarbapenem-hydrolyzing class D β-lactamases (CHDLs) are enzymes found in important Gram-negat...
Objectives Carbapenem-hydrolysing class D β-lactamases of the OXA-48 type are increasingly reported ...
Class D β-lactamase OXA-48 is widely distributed among Gram-negative bacteria and is an important de...
Objectives: Carbapenem-hydrolysing class D β-lactamases of the OXA-48 type are increasingly reporte...
Our understanding of how antimicrobial resistance enzymes evolve to expand their substrate spectrum ...
International audienceOXA-48-producing Enterobacterales have now widely disseminated throughout the ...
International audienceOXA-48-producing Enterobacterales have now widely disseminated throughout the ...
International audienceOXA-48-producing Enterobacterales have now widely disseminated throughout the ...
β-lactam antibiotics, such as penicillin, are the biochemical key to preventing bacterial infections...
peer reviewedCarbapenem-hydrolyzing class D β-lactamases (CHDLs) are enzymes found in important Gram...
Antimicrobial resistance, primarily caused by the overuse of antimicrobials such as antibiotics, is ...
The crystal structure of the class D β-lactamase OXA-436 was solved to a resolution of 1.80 Å. Highe...
Antibiotic resistance is being recognized as a world-wide crisis in modern medicine, rapidly outpaci...
Our understanding of how antimicrobial resistance enzymes evolve to expand their substrate spectrum ...