scholarly article | Q13442814 |
P50 | author | Guenter Weiss | Q42254473 |
Manfred Nairz | Q56816089 | ||
P2093 | author name string | Peter Brunner | |
Heribert Talasz | |||
Klaus Hantke | |||
Gernot Fritsche | |||
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Structure of the Shigella dysenteriae haem transport locus and its phylogenetic distribution in enteric bacteria | Q42681729 | ||
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Duodenal HFE expression and hepcidin levels determine body iron homeostasis: modulation by genetic diversity and dietary iron availability | Q47404090 | ||
The co-ordinated regulation of iron homeostasis in murine macrophages limits the availability of iron for intracellular Salmonella typhimurium | Q50072262 | ||
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Intraphagosomal Mycobacterium tuberculosis acquires iron from both extracellular transferrin and intracellular iron pools. Impact of interferon-gamma and hemochromatosis | Q78425267 | ||
Minute numbers of contaminant CD8+ T cells or CD11b+CD11c+ NK cells are the source of IFN-gamma in IL-12/IL-18-stimulated mouse macrophage populations | Q80597094 | ||
Siderophore biosynthesis but not reductive iron assimilation is essential for Aspergillus fumigatus virulence | Q24647631 | ||
The neutrophil lipocalin NGAL is a bacteriostatic agent that interferes with siderophore-mediated iron acquisition | Q27640027 | ||
A novel duodenal iron-regulated transporter, IREG1, implicated in the basolateral transfer of iron to the circulation | Q28140006 | ||
An iron delivery pathway mediated by a lipocalin | Q28216116 | ||
Association of the transferrin receptor in human placenta with HFE, the protein defective in hereditary hemochromatosis | Q28254820 | ||
A cell-surface receptor for lipocalin 24p3 selectively mediates apoptosis and iron uptake | Q28587213 | ||
Mammalian tissue oxygen levels modulate iron-regulatory protein activities in vivo | Q28591638 | ||
Lipocalin 2-deficient mice exhibit increased sensitivity to Escherichia coli infection but not to ischemia-reperfusion injury | Q28591880 | ||
Functional diversity of helper T lymphocytes | Q29619415 | ||
Lipocalin 2 mediates an innate immune response to bacterial infection by sequestrating iron | Q29619561 | ||
The gene encoding the iron regulatory peptide hepcidin is regulated by anemia, hypoxia, and inflammation | Q29620394 | ||
Cytoplasmic protein binds in vitro to a highly conserved sequence in the 5' untranslated region of ferritin heavy- and light-subunit mRNAs | Q33563194 | ||
The role of iron in protozoan and fungal infectious diseases | Q33666541 | ||
Iron release from macrophages after erythrophagocytosis is up-regulated by ferroportin 1 overexpression and down-regulated by hepcidin | Q33818360 | ||
Heme oxygenase: colors of defense against cellular stress | Q34081677 | ||
Iron and metal regulation in bacteria | Q34205005 | ||
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Interferon gamma-activated human monocytes downregulate transferrin receptors and inhibit the intracellular multiplication of Legionella pneumophila by limiting the availability of iron | Q34571751 | ||
Iron and microbial infection | Q34650077 | ||
Genetics, cytokines and human infectious disease: lessons from weakly pathogenic mycobacteria and salmonellae | Q34805799 | ||
Salmochelins, siderophores of Salmonella enterica and uropathogenic Escherichia coli strains, are recognized by the outer membrane receptor IroN | Q34915244 | ||
Role of receptor proteins for enterobactin and 2,3-dihydroxybenzoylserine in virulence of Salmonella enterica | Q34940802 | ||
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Murine salmonellosis studied by confocal microscopy: Salmonella typhimurium resides intracellularly inside macrophages and exerts a cytotoxic effect on phagocytes in vivo. | Q36380558 | ||
Molecular and clinical aspects of iron homeostasis: From anemia to hemochromatosis. | Q36587705 | ||
Heme oxygenase 1 is required for mammalian iron reutilization | Q36601831 | ||
Intracellular replication is essential for the virulence of Salmonella typhimurium | Q37650583 | ||
Translational regulation via iron-responsive elements by the nitric oxide/NO-synthase pathway | Q38316713 | ||
Cytokine-mediated regulation of iron transport in human monocytic cells | Q38358858 | ||
Gamma interferon enhances internalization and early nonoxidative killing of Salmonella enterica serovar Typhimurium by human macrophages and modifies cytokine responses. | Q39029194 | ||
Acquisition of Mn(II) in addition to Fe(II) is required for full virulence of Salmonella enterica serovar Typhimurium | Q39663606 | ||
Induction of antimicrobial pathways during early-phase immune response to Salmonella spp. in murine macrophages: gamma interferon (IFN-gamma) and upregulation of IFN-gamma receptor alpha expression are required for NADPH phagocytic oxidase gp91-stim | Q39792425 | ||
P433 | issue | 7 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Salmonella Typhimurium | Q166491 |
P304 | page(s) | 1923-1936 | |
P577 | publication date | 2008-07-01 | |
P1433 | published in | European Journal of Immunology | Q5412727 |
P1476 | title | Interferon-gamma limits the availability of iron for intramacrophage Salmonella typhimurium | |
P478 | volume | 38 |
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