Tryptophan is an important precursor for chemical entities that ultimately support the biosynthesis of key metabolites. The second stage of tryptophan catabolism is catalysed by kynurenine formamidase, an enzyme that is different between eukaryotes and prokaryotes. In the present study, we characterize the catalytic properties and present the crystal structures of three bacterial kynurenine formamidases. The structures reveal a new amidase protein fold, a highly organized and distinctive binuclear Zn2+ catalytic centre in a confined, hydrophobic and relatively rigid active site. The structure of a complex with 2-aminoacetophenone delineates aspects of molecular recognition extending to the observation that the substrate itself may be confor...
Bacteria can defend themselves against beta-lactam antibiotics through the expression of class B bet...
Metallo-β-lactamases (MβLs) are Zn(II)-based bacterial enzymes that hydrolyze β-lactam antibiotics, ...
The kynurenine pathway produces NAD+ from L-tryptophan. Metabolites known as the kynurenines are pr...
Tryptophan is an important precursor for chemical entities that ultimately support the biosynthesis ...
The kynurenine pathway is the major route of tryptophan metabolism. The first step of this pathway i...
Allophanate hydrolase (AH) catalyzes the hydrolysis of allophanate, an intermediate in atrazine degr...
Background: Glutaminyl cyclase (QC) forms the pyroglutamyl residue at the amino terminus of numerous...
We report rapid-freeze-quench X-ray absorption spectroscopy of a dizinc metallo-β-lactamase (MβL) re...
To investigate the structural determinants of NitN specificity on short aliphatic amide substrates b...
SummaryM1 aminopeptidases comprise a large family of biologically important zinc enzymes. We show th...
Introduction: The New Delhi metallo-β-lactamase (NDM-1) is an enzyme synthesized by bacterium which ...
Hydrolases containing two metal ions connected by a bridging ligand catalyze reactions important in ...
AbstractBackground: The metallo-β-lactamase from Bacteroides fragilis hydrolyzes a wide range of β-l...
The catalytic mechanism of the cyclic amidohydrolase isatin hydrolase depends on a catalytically act...
The metallo-beta-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The ...
Bacteria can defend themselves against beta-lactam antibiotics through the expression of class B bet...
Metallo-β-lactamases (MβLs) are Zn(II)-based bacterial enzymes that hydrolyze β-lactam antibiotics, ...
The kynurenine pathway produces NAD+ from L-tryptophan. Metabolites known as the kynurenines are pr...
Tryptophan is an important precursor for chemical entities that ultimately support the biosynthesis ...
The kynurenine pathway is the major route of tryptophan metabolism. The first step of this pathway i...
Allophanate hydrolase (AH) catalyzes the hydrolysis of allophanate, an intermediate in atrazine degr...
Background: Glutaminyl cyclase (QC) forms the pyroglutamyl residue at the amino terminus of numerous...
We report rapid-freeze-quench X-ray absorption spectroscopy of a dizinc metallo-β-lactamase (MβL) re...
To investigate the structural determinants of NitN specificity on short aliphatic amide substrates b...
SummaryM1 aminopeptidases comprise a large family of biologically important zinc enzymes. We show th...
Introduction: The New Delhi metallo-β-lactamase (NDM-1) is an enzyme synthesized by bacterium which ...
Hydrolases containing two metal ions connected by a bridging ligand catalyze reactions important in ...
AbstractBackground: The metallo-β-lactamase from Bacteroides fragilis hydrolyzes a wide range of β-l...
The catalytic mechanism of the cyclic amidohydrolase isatin hydrolase depends on a catalytically act...
The metallo-beta-lactamase BcII from Bacillus cereus 569/H/9 possesses a binuclear zinc centre. The ...
Bacteria can defend themselves against beta-lactam antibiotics through the expression of class B bet...
Metallo-β-lactamases (MβLs) are Zn(II)-based bacterial enzymes that hydrolyze β-lactam antibiotics, ...
The kynurenine pathway produces NAD+ from L-tryptophan. Metabolites known as the kynurenines are pr...