The survival and growth of the pathogen Helicobacter pylori in the gastric acidic environment is ensured by the activity of urease, an enzyme containing two essential Ni2+ ions in the active site. The metallo-chaperone UreE facilitates in vivo Ni2+ insertion into the apoenzyme. Crystals of apo-HpUreE (H. pylori UreE) and its Ni2+- and Zn2+-bound forms were obtained from protein solutions in the absence and presence of the metal ions. The crystal structures of the homodimeric protein, determined at 2.00 Å (apo), 1.59 Å (Ni2+) and 2.52 Å (Zn2+) resolution, show the conserved proximal and solvent-exposed His102 residues from two adjacent monomers invariably involved in metal binding. The C-terminal regions of the apoprotein are disordered in t...
The biosynthesis of [NiFe]-hydrogenase and urease in Helicobacter pylori requires several accessory ...
The pathogenicity of Helicobacter pylori relies heavily on urease, which converts urea to ammonia to...
UreE is a homodimeric metallo-chaperone that assists the insertion of Ni2+ ions in the active site o...
The survival and growth of the pathogen Helicobacter pylori in the gastric acidic environment is ens...
The persistence of Helicobacter pylori in the hostile environment of the human stomach is ensured by...
The crystal structure of the urease maturation protein UreE from Helicobacter pylori has been determ...
The essentiality of Ni2+ for urease activity demands proper intracellular Ni2+ trafficking. The meta...
Helicobacter pylori UreF (HpUreF) is involved in the insertion of Ni2? in the urease active site. Th...
International audienceUreG is a P-loop GTP hydrolase involved in the maturation of nickel-containing...
Incorporation of nickel ions to the active sites of urease and hydrogenase is prerequisite for the a...
The pathogenicity of Helicobacter pylori depends on the activity of urease for pH modification. Urea...
Abstract The maturation pathway for the nickel-dependent enzyme urease utilizes the protein UreE as ...
<div><p>Urease is a metalloenzyme essential for the survival of <i>Helicobacter pylori</i> in acidic...
Urease is a metalloenzyme essential for the survival of Helicobacter pylori in acidic gastric enviro...
The biosynthesis of [NiFe]-hydrogenase and urease in Helicobacter pylori requires several accessory ...
The pathogenicity of Helicobacter pylori relies heavily on urease, which converts urea to ammonia to...
UreE is a homodimeric metallo-chaperone that assists the insertion of Ni2+ ions in the active site o...
The survival and growth of the pathogen Helicobacter pylori in the gastric acidic environment is ens...
The persistence of Helicobacter pylori in the hostile environment of the human stomach is ensured by...
The crystal structure of the urease maturation protein UreE from Helicobacter pylori has been determ...
The essentiality of Ni2+ for urease activity demands proper intracellular Ni2+ trafficking. The meta...
Helicobacter pylori UreF (HpUreF) is involved in the insertion of Ni2? in the urease active site. Th...
International audienceUreG is a P-loop GTP hydrolase involved in the maturation of nickel-containing...
Incorporation of nickel ions to the active sites of urease and hydrogenase is prerequisite for the a...
The pathogenicity of Helicobacter pylori depends on the activity of urease for pH modification. Urea...
Abstract The maturation pathway for the nickel-dependent enzyme urease utilizes the protein UreE as ...
<div><p>Urease is a metalloenzyme essential for the survival of <i>Helicobacter pylori</i> in acidic...
Urease is a metalloenzyme essential for the survival of Helicobacter pylori in acidic gastric enviro...
The biosynthesis of [NiFe]-hydrogenase and urease in Helicobacter pylori requires several accessory ...
The pathogenicity of Helicobacter pylori relies heavily on urease, which converts urea to ammonia to...
UreE is a homodimeric metallo-chaperone that assists the insertion of Ni2+ ions in the active site o...