The Helicobacter pylori UreI protein is not involved in urease activity but is essential for bacterial survival in vivo.
about
Pathogenesis of Helicobacter pylori infectionStructure of the proton-gated urea channel from the gastric pathogen Helicobacter pyloriUnexpected role for Helicobacter pylori DNA polymerase I as a source of genetic variabilityAcid-induced activation of the urease promoters is mediated directly by the ArsRS two-component system of Helicobacter pylori.Characterization of the ArsRS regulon of Helicobacter pylori, involved in acid adaptationMechanisms of molecular transport through the urea channel of Helicobacter pylori.Identification of virulence genes of Helicobacter pylori by random insertion mutagenesisMechanistic insights into type I toxin antitoxin systems in Helicobacter pylori: the importance of mRNA folding in controlling toxin expressionRole of AmiA in the morphological transition of Helicobacter pylori and in immune escapeUnveiling novel RecO distant orthologues involved in homologous recombination.Histidine residue 94 is involved in pH sensing by histidine kinase ArsS of Helicobacter pyloriCelecoxib inhibits Helicobacter pylori colonization-related factors.Metabolism and genetics of Helicobacter pylori: the genome era.The Helicobacter pylori GroES cochaperonin HspA functions as a specialized nickel chaperone and sequestration protein through its unique C-terminal extensionHelicobacter hepaticus urease is not required for intestinal colonization but promotes hepatic inflammation in male A/JCr mice.gamma-Glutamyltransferase is a Helicobacter pylori virulence factor but is not essential for colonization.Nickel-responsive induction of urease expression in Helicobacter pylori is mediated at the transcriptional levelCloning, expression, and catalytic activity of Helicobacter hepaticus urease.Ammonium metabolism enzymes aid Helicobacter pylori acid resistance.In vivo complementation of ureB restores the ability of Helicobacter pylori to colonize.Vitamin B6 is required for full motility and virulence in Helicobacter pylori.The emerging role of urease as a general microbial virulence factor.Microbial urease in health and diseaseChannel-mediated potassium uptake in Helicobacter pylori is essential for gastric colonization.Characterization of Helicobacter pylori lytic transglycosylases Slt and MltD.Variations in periplasmic loop interactions determine the pH-dependent activity of the hexameric urea transporter UreI from Helicobacter pylori: a molecular dynamics studyGene expression in vivo shows that Helicobacter pylori colonizes an acidic niche on the gastric surface.Two-component systems of Helicobacter pylori contribute to virulence in a mouse infection modelEvolution of Helicobacter: Acquisition by Gastric Species of Two Histidine-Rich Proteins Essential for Colonization.Genetic Diversity as Consequence of a Microaerobic and Neutrophilic LifestylePresence of active aliphatic amidases in Helicobacter species able to colonize the stomach.A noncognate aminoacyl-tRNA synthetase that may resolve a missing link in protein evolution.Characterization in Helicobacter pylori of a Nickel Transporter Essential for Colonization That Was Acquired during Evolution by Gastric Helicobacter Species.Expanded metabolic reconstruction of Helicobacter pylori (iIT341 GSM/GPR): an in silico genome-scale characterization of single- and double-deletion mutantsRoles of alpha and beta carbonic anhydrases of Helicobacter pylori in the urease-dependent response to acidity and in colonization of the murine gastric mucosa.Development of inducible systems to engineer conditional mutants of essential genes of Helicobacter pylori.A minimal bacterial RNase J-based degradosome is associated with translating ribosomes.Nickel-binding and accessory proteins facilitating Ni-enzyme maturation in Helicobacter pylori.RNase J depletion leads to massive changes in mRNA abundance in Helicobacter pylori.Functional characterization of Actinobacillus pleuropneumoniae urea transport protein, ApUT.
P2860
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P2860
The Helicobacter pylori UreI protein is not involved in urease activity but is essential for bacterial survival in vivo.
description
1998 nî lūn-bûn
@nan
1998年の論文
@ja
1998年論文
@yue
1998年論文
@zh-hant
1998年論文
@zh-hk
1998年論文
@zh-mo
1998年論文
@zh-tw
1998年论文
@wuu
1998年论文
@zh
1998年论文
@zh-cn
name
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@en
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@nl
type
label
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@en
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@nl
prefLabel
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@en
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@nl
P2093
P2860
P1476
The Helicobacter pylori UreI p ...... or bacterial survival in vivo.
@en
P2093
De Reuse H
Skouloubris S
Thiberge JM
P2860
P304
P407
P577
1998-09-01T00:00:00Z