textabstractIntracellular iron homeostasis is a necessity for almost all living organisms, since both iron restriction and iron overload can result in cell death. The ferric uptake regulator protein, Fur, controls iron homeostasis in most Gram-negative bacteria. In the human gastric pathogen Helicobacter pylori, Fur is thought to have acquired extra functions to compensate for the relative paucity of regulatory genes. To identify H. pylori genes regulated by iron and Fur, we used DNA array-based transcriptional profiling with RNA isolated from H. pylori 26695 wild-type and fur mutant cells grown in iron-restricted and iron-replete conditions. Sixteen genes encoding proteins involved in m...
Helicobacter pylori is a significant human pathogen that has adapted to survive the many stresses fo...
Transcription factors (TFs) regulate gene expression by modulating their DNA binding affinity in res...
The microaerophilic gastric pathogen Helicobacter pylori is exposed to oxidative stress originating ...
BACKGROUND: Availability of the essential nutrient iron is thought to vary greatly in the gastric mu...
Iron homeostasis is particularly important in pathogenic bacteria, which need to compete with the ho...
The ferric uptake regulator protein Fur regulates iron-dependent gene expression in bacteria. In Hel...
textabstractBackground. Availability of the essential nutrient iron is thought to vary greatly in th...
Maintaining iron homeostasis is a necessity for all living organisms, as free iron augments the gene...
The ferric uptake regulator (Fur) protein is known to act as a Fe 2+-dependent transcriptional repre...
We have overexpressed and purified the Helicobacter pylori Fur protein and analyzed its interaction ...
The only known niche of the human pathogen Helicobacter pylori is the gastric mucosa, where large fl...
The ferric uptake regulator (Fur) of Helicobacter pylori is a global regulator that is important for...
2 Abstract 24 In Helicobacter pylori, the Ferric Uptake Regulator (Fur) has evolved additional 25 re...
The Fur protein acts as a regulator of iron-dependent gene transcription in bacteria. In Helicobacte...
InHelicobacter pylori, the ferric uptake regulator (Fur) has evolved additional regulatory functions...
Helicobacter pylori is a significant human pathogen that has adapted to survive the many stresses fo...
Transcription factors (TFs) regulate gene expression by modulating their DNA binding affinity in res...
The microaerophilic gastric pathogen Helicobacter pylori is exposed to oxidative stress originating ...
BACKGROUND: Availability of the essential nutrient iron is thought to vary greatly in the gastric mu...
Iron homeostasis is particularly important in pathogenic bacteria, which need to compete with the ho...
The ferric uptake regulator protein Fur regulates iron-dependent gene expression in bacteria. In Hel...
textabstractBackground. Availability of the essential nutrient iron is thought to vary greatly in th...
Maintaining iron homeostasis is a necessity for all living organisms, as free iron augments the gene...
The ferric uptake regulator (Fur) protein is known to act as a Fe 2+-dependent transcriptional repre...
We have overexpressed and purified the Helicobacter pylori Fur protein and analyzed its interaction ...
The only known niche of the human pathogen Helicobacter pylori is the gastric mucosa, where large fl...
The ferric uptake regulator (Fur) of Helicobacter pylori is a global regulator that is important for...
2 Abstract 24 In Helicobacter pylori, the Ferric Uptake Regulator (Fur) has evolved additional 25 re...
The Fur protein acts as a regulator of iron-dependent gene transcription in bacteria. In Helicobacte...
InHelicobacter pylori, the ferric uptake regulator (Fur) has evolved additional regulatory functions...
Helicobacter pylori is a significant human pathogen that has adapted to survive the many stresses fo...
Transcription factors (TFs) regulate gene expression by modulating their DNA binding affinity in res...
The microaerophilic gastric pathogen Helicobacter pylori is exposed to oxidative stress originating ...