When expressed by pathogenic bacteria, Zn2+-β-lactamases induce resistance to most β-lactam antibiotics. A possible strategy to fight these bacteria would be a combined therapy with non-toxic inhibitors of Zn2+-β-lactamases together with standard antibiotics. For this purpose, it is important to verify that the inhibitor is effective under all clinical conditions. We have investigated the correlation between the number of zinc ions bound to the Zn2+-β-lactamase from Bacillus cereus and hydrolysis of benzylpenicillin and nitrocefin for the wild type and a mutant where cysteine 168 is replaced by alanine. It is shown that both the mono-Zn2+ (mononuclear) and di-Zn2+(binuclear) Zn2+-β-lactamases are catalytically active but with different kine...
AbstractMetallo-β-lactamases are the latest resistance mechanism of pathogenic and opportunistic bac...
Metallohydrolases with dinuclear-zinc active sites perform many important biological hydrolytic reac...
In an effort to probe the role of the Zn(II) sites in metallo-β-lactamase L1, mononuclear metal ion ...
When expressed by pathogenic bacteria, Zn2+-beta-lactamases induce resistance to most beta-lactam an...
The metallo-beta-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The ...
AbstractThe Bacteroides fragilis Zn-β-lactamase is active with a mono- and a binuclear zinc site. Th...
AbstractBackground: The metallo-β-lactamase from Bacteroides fragilis hydrolyzes a wide range of β-l...
Beta-lactamases are involved in bacterial resistance. Members of the metallo-enzyme class are now fo...
The metallo-b-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The mon...
The subclass B3 FEZ-1 beta-lactamase produced by Fluoribacter (Legionella) gormanii is a Zn(II)-cont...
AbstractThe Bacteroides fragilis Zn-β-lactamase is active with a mono- and a binuclear zinc site. Th...
Metallo-β-lactamases are zinc-dependent hydrolases that inactivate β-lactam antibiotics, rendering b...
The Bacteroides fragilis Zn-beta-lactamase is active with a mono- and a binuclear zinc site. The apo...
Metallo-(beta)-lactamases are zinc enzymes able to hydrolyze the four-membered ring of (beta)-lactam...
In an effort to probe the role of the Zn(II) sites in metallo-β-lactamase L1, mononuclear metal ion ...
AbstractMetallo-β-lactamases are the latest resistance mechanism of pathogenic and opportunistic bac...
Metallohydrolases with dinuclear-zinc active sites perform many important biological hydrolytic reac...
In an effort to probe the role of the Zn(II) sites in metallo-β-lactamase L1, mononuclear metal ion ...
When expressed by pathogenic bacteria, Zn2+-beta-lactamases induce resistance to most beta-lactam an...
The metallo-beta-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The ...
AbstractThe Bacteroides fragilis Zn-β-lactamase is active with a mono- and a binuclear zinc site. Th...
AbstractBackground: The metallo-β-lactamase from Bacteroides fragilis hydrolyzes a wide range of β-l...
Beta-lactamases are involved in bacterial resistance. Members of the metallo-enzyme class are now fo...
The metallo-b-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The mon...
The subclass B3 FEZ-1 beta-lactamase produced by Fluoribacter (Legionella) gormanii is a Zn(II)-cont...
AbstractThe Bacteroides fragilis Zn-β-lactamase is active with a mono- and a binuclear zinc site. Th...
Metallo-β-lactamases are zinc-dependent hydrolases that inactivate β-lactam antibiotics, rendering b...
The Bacteroides fragilis Zn-beta-lactamase is active with a mono- and a binuclear zinc site. The apo...
Metallo-(beta)-lactamases are zinc enzymes able to hydrolyze the four-membered ring of (beta)-lactam...
In an effort to probe the role of the Zn(II) sites in metallo-β-lactamase L1, mononuclear metal ion ...
AbstractMetallo-β-lactamases are the latest resistance mechanism of pathogenic and opportunistic bac...
Metallohydrolases with dinuclear-zinc active sites perform many important biological hydrolytic reac...
In an effort to probe the role of the Zn(II) sites in metallo-β-lactamase L1, mononuclear metal ion ...