Metallo-beta-lactamases (MbetaLs) are zinc enzymes able to hydrolyze almost all beta-lactam antibiotics, rendering them inactive, at the same time endowing bacteria high levels of resistance. The design of inhibitors active against all classes of MbetaLs has been hampered by their structural diversity and by the heterogeneity in metal content in enzymes from different sources. BcII is the metallo-beta-lactamase from Bacillus cereus, which is found in both the mononuclear and dinuclear forms. Despite extensive studies, there is still controversy about the nature of the active BcII species. Here we have designed two mutant enzymes in which each one of the metal binding sites was selectively removed. Both mutants were almost inactive, despite ...
When expressed by pathogenic bacteria, Zn2+-β-lactamases induce resistance to most β-lactam antibiot...
Metallo-beta-lactamases (MBLs) are a family of metalloenzymes that are capable of hydrolyzing beta-l...
Metallo-beta-lactamases catalyse the hydrolysis of most beta-lactam antibiotics and hence represent ...
Metallo-beta-lactamases (MbetaLs) are zinc enzymes able to hydrolyze almost all beta-lactam antibiot...
Metallo-(beta)-lactamases are zinc enzymes able to hydrolyze the four-membered ring of (beta)-lactam...
The metallo-b-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The mon...
Metallo-(beta)-lactamases are zinc enzymes able to hydrolyze the four-membered ring of (beta)-lactam...
The metallo-beta-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The ...
Increased resistance to beta-lactam antibiotics is mainly due to beta-lactamases. X-ray structures o...
Beta-lactamases are involved in bacterial resistance. Members of the metallo-enzyme class are now fo...
When expressed by pathogenic bacteria, Zn2+-beta-lactamases induce resistance to most beta-lactam an...
Metallo-beta-lactamases catalyze the hydrolysis of most beta-lactam antibiotics and hence represent ...
International audienceSubclass B1 beta-lactamases are Zn(II)-dependent hydrolases that confer bacter...
The metallo-beta-lactamase betaLII from Bacillus cereus 569/H/9 was displayed on the filamentous pha...
AbstractMetallo-β-lactamases are the latest resistance mechanism of pathogenic and opportunistic bac...
When expressed by pathogenic bacteria, Zn2+-β-lactamases induce resistance to most β-lactam antibiot...
Metallo-beta-lactamases (MBLs) are a family of metalloenzymes that are capable of hydrolyzing beta-l...
Metallo-beta-lactamases catalyse the hydrolysis of most beta-lactam antibiotics and hence represent ...
Metallo-beta-lactamases (MbetaLs) are zinc enzymes able to hydrolyze almost all beta-lactam antibiot...
Metallo-(beta)-lactamases are zinc enzymes able to hydrolyze the four-membered ring of (beta)-lactam...
The metallo-b-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The mon...
Metallo-(beta)-lactamases are zinc enzymes able to hydrolyze the four-membered ring of (beta)-lactam...
The metallo-beta-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The ...
Increased resistance to beta-lactam antibiotics is mainly due to beta-lactamases. X-ray structures o...
Beta-lactamases are involved in bacterial resistance. Members of the metallo-enzyme class are now fo...
When expressed by pathogenic bacteria, Zn2+-beta-lactamases induce resistance to most beta-lactam an...
Metallo-beta-lactamases catalyze the hydrolysis of most beta-lactam antibiotics and hence represent ...
International audienceSubclass B1 beta-lactamases are Zn(II)-dependent hydrolases that confer bacter...
The metallo-beta-lactamase betaLII from Bacillus cereus 569/H/9 was displayed on the filamentous pha...
AbstractMetallo-β-lactamases are the latest resistance mechanism of pathogenic and opportunistic bac...
When expressed by pathogenic bacteria, Zn2+-β-lactamases induce resistance to most β-lactam antibiot...
Metallo-beta-lactamases (MBLs) are a family of metalloenzymes that are capable of hydrolyzing beta-l...
Metallo-beta-lactamases catalyse the hydrolysis of most beta-lactam antibiotics and hence represent ...