The structure of Bacillus pasteurii urease (BPU) inhibited with phosphate was solved and refined using synchrotron X-ray diffraction data from a vitrified crystal (1.85 Angstrom resolution, 99.3% completeness, data redundancy 4.6 R-factor 17.3%, PDB code 6UBP). A distance of 3.5 Angstrom separates the two Ni ions in the active site. The binding mode of the inhibitor involves the formation of four coordination bonds with the two Ni ions: one phosphate oxygen atom symmetrically bridges the two metal ions (1.9-2.0 Angstrom), while two of the remaining phosphate oxygen atoms bind to the Ni atoms at 2.4 Angstrom. The fourth phosphate oxygen is directed into the active site channel. Analysis of the H-bonding network around the bound inhibitor ind...
Urease is the most efficient enzyme known to date, and catalyzes the hydrolysis of urea using two Ni...
Urease is a nickel-dependent enzyme and a virulence factor for ureolytic bacterial human pathogens, ...
Based on the structure of the most potential inhibitor diamidophosphate, various novel groups of inh...
The structure of Bacillus pasteurii urease (BPU) inhibited with phosphate was solved and refined usi...
Background: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mineralizati...
AbstractBackground: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mine...
The nickel-dependent enzyme urease represents a negative element for the efficiency of soil nitrogen...
The structure of Bacillus pasteurii urease inhibited with acetohydroxamic acid was solved and refine...
none4noAbstract The viability of different mechanisms of catalysis and inhibition of the nickel-cont...
The nickel-dependent enzyme urease is a virulence factor for a large number of pathogenic and antibi...
The structure of beta-mercaptoethanol-inhibited urease from Bacillus pasteurii, a highly ureolytic s...
Urease is the most efficient enzyme known to date, and catalyzes the hydrolysis of urea using two Ni...
Urease is a nickel-dependent enzyme and a virulence factor for ureolytic bacterial human pathogens, ...
Based on the structure of the most potential inhibitor diamidophosphate, various novel groups of inh...
The structure of Bacillus pasteurii urease (BPU) inhibited with phosphate was solved and refined usi...
Background: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mineralizati...
AbstractBackground: Urease catalyzes the hydrolysis of urea, the final step of organic nitrogen mine...
The nickel-dependent enzyme urease represents a negative element for the efficiency of soil nitrogen...
The structure of Bacillus pasteurii urease inhibited with acetohydroxamic acid was solved and refine...
none4noAbstract The viability of different mechanisms of catalysis and inhibition of the nickel-cont...
The nickel-dependent enzyme urease is a virulence factor for a large number of pathogenic and antibi...
The structure of beta-mercaptoethanol-inhibited urease from Bacillus pasteurii, a highly ureolytic s...
Urease is the most efficient enzyme known to date, and catalyzes the hydrolysis of urea using two Ni...
Urease is a nickel-dependent enzyme and a virulence factor for ureolytic bacterial human pathogens, ...
Based on the structure of the most potential inhibitor diamidophosphate, various novel groups of inh...