Abstract The viability of different mechanisms of catalysis and inhibition of the nickel-containing enzyme urease was explored using the available highresolution structures of the enzyme isolated from Bacillus pasteurii in the native form and inhibited with several substrates. The structures and charge distribution of urea, its catalytic transition state, and three enzyme inhibitors were calculated using ab initio and density functional theory methods. The DOCK program suite was employed to determine families of structures of urease complexes characterized by docking energy scores indicative of their relative stability according to steric and electrostatic criteria. Adjustment of the parameters used by DOCK, in order to account for the pres...
The nickel-dependent enzyme urease represents a negative element for the efficiency of soil nitrogen...
The structure of Bacillus pasteurii urease (BPU) inhibited with phosphate was solved and refined usi...
Urease was the first enzyme to be crystallized and shown to be a protein. Some 50 years after its cr...
Abstract The viability of different mechanisms of catalysis and inhibition of the nickel-containing ...
AbstractBackground: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mine...
This work provides a comprehensive critical summary of urease spectroscopy, crystallography, inhibit...
Background: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mineralizati...
In order to elucidate aspects of the mechanism of the hydrolytic enzyme urease, theoretical calculat...
Introduction. Urease is a representative of a small group of enzymes that can bind different alterna...
Urease is a Ni(II)-containing enzyme able to catalyse the conversion of urea to ammonia and carbamat...
Urease belongs to a family of highly conserved urea-hydrolyzing enzymes. A common feature of these e...
Urease, the most efficient enzyme known, contains an essential dinuclear NiII cluster in the active ...
The structure of the complex of urease, a Ni-containing metalloenzyme, with boric acid was determine...
The nickel-dependent enzyme urease is a virulence factor for a large number of pathogenic and antibi...
The nickel-dependent enzyme urease represents a negative element for the efficiency of soil nitrogen...
The structure of Bacillus pasteurii urease (BPU) inhibited with phosphate was solved and refined usi...
Urease was the first enzyme to be crystallized and shown to be a protein. Some 50 years after its cr...
Abstract The viability of different mechanisms of catalysis and inhibition of the nickel-containing ...
AbstractBackground: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mine...
This work provides a comprehensive critical summary of urease spectroscopy, crystallography, inhibit...
Background: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mineralizati...
In order to elucidate aspects of the mechanism of the hydrolytic enzyme urease, theoretical calculat...
Introduction. Urease is a representative of a small group of enzymes that can bind different alterna...
Urease is a Ni(II)-containing enzyme able to catalyse the conversion of urea to ammonia and carbamat...
Urease belongs to a family of highly conserved urea-hydrolyzing enzymes. A common feature of these e...
Urease, the most efficient enzyme known, contains an essential dinuclear NiII cluster in the active ...
The structure of the complex of urease, a Ni-containing metalloenzyme, with boric acid was determine...
The nickel-dependent enzyme urease is a virulence factor for a large number of pathogenic and antibi...
The nickel-dependent enzyme urease represents a negative element for the efficiency of soil nitrogen...
The structure of Bacillus pasteurii urease (BPU) inhibited with phosphate was solved and refined usi...
Urease was the first enzyme to be crystallized and shown to be a protein. Some 50 years after its cr...