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Iron homeostasis signaling pathway

Iron is essential for normal cell metabolism and plays an important role in processes including DNA synthesis, cellular respiration and oxygen transport. Iron can also generate toxic reactive oxygen species via the Fenton reaction, which can damage the cell. Loss of iron can happen via blood loss and via desquamation of intestinal epithelial cells, which contain ferritin. The greatest need for iron mobilization in the body is erythropoiesis....

Iron homeostasis signaling pathway

Pathway Summary

Iron is essential for normal cell metabolism and plays an important role in processes including DNA synthesis, cellular respiration and oxygen transport. Iron can also generate toxic reactive oxygen species via the Fenton reaction, which can damage the cell. Loss of iron can happen via blood loss and via desquamation of intestinal epithelial cells, which contain ferritin. The greatest need for iron mobilization in the body is erythropoiesis.In humans the excess cellular iron (hemochromatosis) can lead to cirrhosis, cardiomyopathy and diabetes mellitus. Excess iron content in the brain is associated with several inherited neurodegenerative diseases, including neurodegeneration, Friedreich's ataxia, Parkinson's, and Alzheimer's diseases.Maintenance of cellular iron homeostasis is accomplished by the coordinated regulation of iron uptake, storage and export. Cytosolic iron is used for the formation of iron-containing proteins and for biosynthesis of Fe-S clusters and heme. Normal absorption of dietary iron begins in the duodenum, in the apical membrane of the enterocytes, where it enters in the form of inorganic iron via SLC11A2 or in the form of heme. Iron can either be stored in these cells in the form of ferritin or exit the cell and enter into circulation by the iron exporter SLC40A1. Ferritin is an intracellular iron storage protein complex consisting of heavy and light chain subunits that form a hollow sphere accepting up to 4,500 cations of Fe(III). Iron circulates in plasma bound to the glycoprotein transferrin (Tf), which has two high-affinity binding sites for Fe(III). Tf-Fe(III) binds to cell surface TFRC followed by internalization by clathrin-mediated endocytosis. Most circulating iron comes from the recycling of heme from senescent erythrocytes by reticuloendothelial macrophages. Hepatocytes play a dual role in systemic iron metabolism: they are the major site of iron storage and they secrete the master iron regulatory hormone hepcidin (HAMP), whose concentration increases in high iron or inflammatory conditions. Circulating HAMP binds to SLC40A1 and triggers its internalization and degradation, thus inhibiting the release of iron from enterocytes, hepatocytes, and macrophages.ACO1 and IREB2 are the principal regulators, or iron-responsive proteins, of cellular iron homeostasis in vertebrates. IRPs are cytosolic proteins that bind to iron-responsive elements (IREs) in the 5' or 3' untranslated regions of mRNAs encoding proteins involved in iron uptake (TFRC, SLC11A2), sequestration (ferritin) and export (SLC40A1). Binding to the 5' UTR represses translation, while binding to the 3' UTR inhibits mRNA degradation. Both IRP proteins display IRE-binding under conditions of iron deprivation, but become post-translationally inactivated (ACO1) or degraded (IREB2) when the iron supply to cells is increased.The IRE/IRP system provides key homeostatic regulation on the cellular level, whereas HAMP provides organism-wide homeostatic regulation, especially against iron overload.

Iron homeostasis signaling pathway Genes list

Explore Genes related to Iron homeostasis signaling pathway
ABCB10
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Human
ATP binding cassette subfamily B member 10
ACO1
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Human
aconitase 1
ACO2
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Human
aconitase 2
ALAS2
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Human
5'-aminolevulinate synthase 2
ARNT
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Human
aryl hydrocarbon receptor nuclear translocator
ATP6AP1
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Human
ATPase H+ transporting accessory protein 1
ATP6AP1L
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Human
ATPase H+ transporting accessory protein 1 like
ATP6AP2
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Human
ATPase H+ transporting accessory protein 2
ATP6V0A1
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Human
ATPase H+ transporting V0 subunit a1
ATP6V0A2
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Human
ATPase H+ transporting V0 subunit a2
ATP6V0A4
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Human
ATPase H+ transporting V0 subunit a4
ATP6V0B
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Human
ATPase H+ transporting V0 subunit b
ATP6V0C
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Human
ATPase H+ transporting V0 subunit c
ATP6V0D1
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Human
ATPase H+ transporting V0 subunit d1
ATP6V0D2
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Human
ATPase H+ transporting V0 subunit d2
ATP6V0E1
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Human
ATPase H+ transporting V0 subunit e1
ATP6V0E2
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Human
ATPase H+ transporting V0 subunit e2
ATP6V1A
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Human
ATPase H+ transporting V1 subunit A
ATP6V1B1
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Human
ATPase H+ transporting V1 subunit B1
ATP6V1B2
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Human
ATPase H+ transporting V1 subunit B2
ATP6V1C1
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Human
ATPase H+ transporting V1 subunit C1
ATP6V1C2
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Human
ATPase H+ transporting V1 subunit C2
ATP6V1D
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Human
ATPase H+ transporting V1 subunit D
ATP6V1E1
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Human
ATPase H+ transporting V1 subunit E1
ATP6V1E2
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Human
ATPase H+ transporting V1 subunit E2
ATP6V1F
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Human
ATPase H+ transporting V1 subunit F
ATP6V1G1
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Human
ATPase H+ transporting V1 subunit G1
ATP6V1G2
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Human
ATPase H+ transporting V1 subunit G2
ATP6V1G3
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Human
ATPase H+ transporting V1 subunit G3
ATP6V1H
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Human
ATPase H+ transporting V1 subunit H
BMP1
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Human
bone morphogenetic protein 1
BMP10
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Human
bone morphogenetic protein 10
BMP15
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Human
bone morphogenetic protein 15
BMP2
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Human
bone morphogenetic protein 2
BMP3
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Human
bone morphogenetic protein 3
BMP4
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Human
bone morphogenetic protein 4
BMP5
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Human
bone morphogenetic protein 5
BMP6
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Human
bone morphogenetic protein 6
BMP7
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Human
bone morphogenetic protein 7
BMP8A
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Human
bone morphogenetic protein 8a
BMP8B
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Human
bone morphogenetic protein 8b
BMPR1A
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Human
bone morphogenetic protein receptor type 1A
BMPR1B
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Human
bone morphogenetic protein receptor type 1B
BMPR2
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Human
bone morphogenetic protein receptor type 2
BTRC
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Human
beta-transducin repeat containing E3 ubiquitin protein ligase
CD163
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Human
CD163 molecule
CDC34
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Human
cell division cycle 34, ubiqiutin conjugating enzyme
CIAO1
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Human
cytosolic iron-sulfur assembly component 1
CIAO2A
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Human
cytosolic iron-sulfur assembly component 2A
CIAO2B
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Human
cytosolic iron-sulfur assembly component 2B
CIAO3
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Human
cytosolic iron-sulfur assembly component 3
CP
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Human
ceruloplasmin
CREB3L3
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Human
cAMP responsive element binding protein 3 like 3
CUL1
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Human
cullin 1
CYBRD1
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Human
cytochrome b reductase 1
EGF
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Human
epidermal growth factor
EGFR
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Human
epidermal growth factor receptor
EPAS1
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Human
endothelial PAS domain protein 1
EPO
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Human
erythropoietin
ERFE
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Human
erythroferrone
FBXL5
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Human
F-box and leucine rich repeat protein 5
FECH
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Human
ferrochelatase
FLVCR1
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Human
FLVCR heme transporter 1
FTH1
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Human
ferritin heavy chain 1
FTL
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Human
ferritin light chain
FXN
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Human
frataxin
GDF15
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Human
growth differentiation factor 15
HAMP
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Human
hepcidin antimicrobial peptide
HBB
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Human
hemoglobin subunit beta
HBD
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Human
hemoglobin subunit delta
HBE1
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Human
hemoglobin subunit epsilon 1
HBG1
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Human
hemoglobin subunit gamma 1
HBG2
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Human
hemoglobin subunit gamma 2
HBQ1
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Human
hemoglobin subunit theta 1
HBZ
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Human
hemoglobin subunit zeta
HEPH
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Human
hephaestin
HFE
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Human
homeostatic iron regulator
HIF1A
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Human
hypoxia inducible factor 1 subunit alpha
HIF3A
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Human
hypoxia inducible factor 3 subunit alpha
HJV
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Human
hemojuvelin BMP co-receptor
HMOX1
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Human
heme oxygenase 1
HMOX2
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Human
heme oxygenase 2
HP
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Human
haptoglobin
HPX
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Human
hemopexin
HSCB
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Human
HscB mitochondrial iron-sulfur cluster cochaperone
HSPA9
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Human
heat shock protein family A (Hsp70) member 9
IL6
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Human
interleukin 6
IL6R
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Human
interleukin 6 receptor
IREB2
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Human
iron responsive element binding protein 2
ISCU
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Human
iron-sulfur cluster assembly enzyme
JAK1
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Human
Janus kinase 1
JAK2
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Human
Janus kinase 2
JAK3
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Human
Janus kinase 3
LRP1
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Human
LDL receptor related protein 1
LYRM4
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Human
LYR motif containing 4
MAPK1
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Human
mitogen-activated protein kinase 1
MAPK14
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Human
mitogen-activated protein kinase 14
MAPK3
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Human
mitogen-activated protein kinase 3
MCOLN1
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Human
mucolipin TRP cation channel 1
MMS19
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Human
MMS19 homolog, cytosolic iron-sulfur assembly component
NFS1
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Human
NFS1 cysteine desulfurase
NUBP1
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Human
nucleotide binding protein 1
NUBP2
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Human
nucleotide binding protein 2
PCBP1
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Human
poly(rC) binding protein 1
PDGFA
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Human
platelet derived growth factor subunit A
PDGFB
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Human
platelet derived growth factor subunit B
PDGFRA
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Human
platelet derived growth factor receptor alpha
PDGFRB
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Human
platelet derived growth factor receptor beta
SKP1
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Human
S-phase kinase associated protein 1
SKP2
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Human
S-phase kinase associated protein 2
SLC11A1
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Human
solute carrier family 11 member 1
SLC11A2
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Human
solute carrier family 11 member 2
SLC25A37
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Human
solute carrier family 25 member 37
SLC39A14
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Human
solute carrier family 39 member 14
SLC40A1
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Human
solute carrier family 40 member 1
SLC46A1
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Human
solute carrier family 46 member 1
SLC48A1
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Human
solute carrier family 48 member 1
SMAD1
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Human
SMAD family member 1
SMAD2
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Human
SMAD family member 2
SMAD3
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Human
SMAD family member 3
SMAD4
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Human
SMAD family member 4
SMAD5
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Human
SMAD family member 5
STAT3
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Human
signal transducer and activator of transcription 3
STAT5A
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Human
signal transducer and activator of transcription 5A
STAT5B
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Human
signal transducer and activator of transcription 5B
STEAP3
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Human
STEAP3 metalloreductase
TCIRG1
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Human
T cell immune regulator 1, ATPase H+ transporting V0 subunit a3
TF
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Human
transferrin
TFR2
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Human
transferrin receptor 2
TFRC
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Human
transferrin receptor
TMPRSS6
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Human
transmembrane serine protease 6
TWSG1
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Human
twisted gastrulation BMP signaling modulator 1
TYK2
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Human
tyrosine kinase 2

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