about
Shared and distinct mechanisms of iron acquisition by bacterial and fungal pathogens of humansFerritin for the clinicianMolecular basis of inherited microcytic anemia due to defects in iron acquisition or heme synthesisCancer cells with irons in the fireMechanistic and regulatory aspects of intestinal iron absorptionCharting the travels of copper in eukaryotes from yeast to mammalsMolecular mediators governing iron-copper interactionsMechanisms of mammalian iron homeostasisPhysical Activity Protects the Human Brain against Metabolic Stress Induced by a Postprandial and Chronic InflammationStructure of the membrane proximal oxidoreductase domain of human Steap3, the dominant ferrireductase of the erythroid transferrin cycleThe Crystal Structure of Six-transmembrane Epithelial Antigen of the Prostate 4 (Steap4), a Ferri/Cuprireductase, Suggests a Novel Interdomain Flavin-binding SiteIdentification of a vacuole-associated metalloreductase and its role in Ctr2-mediated intracellular copper mobilization.The metalloreductase Fre6p in Fe-efflux from the yeast vacuole.Oxidative stress and the homeodynamics of iron metabolismA missense mutation in TFRC, encoding transferrin receptor 1, causes combined immunodeficiencyBioavailability of silver nanoparticles and ions: from a chemical and biochemical perspectiveIdentification of a Steap3 endosomal targeting motif essential for normal iron metabolismSTEAP4 expression in human islets is associated with differences in body mass index, sex, HbA1c, and inflammation.An Islet-Targeted Genome-Wide Association Scan Identifies Novel Genes Implicated in Cytokine-Mediated Islet Stress in Type 2 Diabetes.Iron and porphyrin trafficking in heme biogenesis.Modulation of iron homeostasis in macrophages by bacterial intracellular pathogens.Mechanisms of brain iron transport: insight into neurodegeneration and CNS disorders.Prion protein regulates iron transport by functioning as a ferrireductase.A gene expression signature for insulin resistance.Targeting iron metabolism in drug discovery and deliveryAnticancer activity of the iron facilitator LS081Physiology of iron metabolismNCI60 cancer cell line panel data and RNAi analysis help identify EAF2 as a modulator of simvastatin and lovastatin response in HCT-116 cells.Expression of STEAP1 and STEAP1B in prostate cell lines, and the putative regulation of STEAP1 by post-transcriptional and post-translational mechanisms.Regulation of hepatic six transmembrane epithelial antigen of prostate 4 (STEAP4) expression by STAT3 and CCAAT/enhancer-binding protein alphaFerroportin mediates the intestinal absorption of iron from a nanoparticulate ferritin core mimetic in mice.Monoclonal antibody to six transmembrane epithelial antigen of prostate-4 influences insulin sensitivity by attenuating phosphorylation of P13K (P85) and Akt: possible mitochondrial mechanism.Transcriptional profiling of chondrodysplasia growth plate cartilage reveals adaptive ER-stress networks that allow survival but disrupt hypertrophyRedox cycling in iron uptake, efflux, and traffickingHow copper traverses cellular membranes through the mammalian copper transporter 1, Ctr1.Stamp2 controls macrophage inflammation through nicotinamide adenine dinucleotide phosphate homeostasis and protects against atherosclerosis.Six-transmembrane epithelial antigen of prostate4 (STEAP4) is a tumor necrosis factor alpha-induced protein that regulates IL-6, IL-8, and cell proliferation in synovium from patients with rheumatoid arthritis.The core control system of intracellular iron homeostasis: a mathematical model.Genome-wide methylation profiles reveal quantitative views of human aging rates.Evolution of the ferric reductase domain (FRD) superfamily: modularity, functional diversification, and signature motifs
P2860
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P248
Q21131297-D96F3DE0-8E8F-4BB3-9E6E-C7044972DB5BQ24642942-44926136-0673-4359-8EF5-E9CDF8046A52Q24646911-D1E05668-6E5B-4BD1-86DD-4AC2D7515A23Q26851312-5538455E-179D-4550-9437-74CFCC5DC8F4Q26861531-06E8E774-CCF6-4314-9A88-50C358DB9E1FQ26863502-E0DA0CB9-6593-4A98-8E4E-1FBBB703256BQ27003297-6922647A-F75E-464B-9730-FCFA75FA48BBQ27010510-09DD4397-D4FF-4DA1-B059-9DE9D53CF814Q27014875-102C5400-1EA6-469F-8083-7D9F1A0F371EQ27650656-6CD68AE7-978C-4329-9E30-03CBBA95E2CDQ27678472-B702F00B-0C67-449E-BBAC-3680F4959D65Q27931968-1F0D1BF0-3387-425F-AC62-7EBCA7405CFFQ27940317-CD2FD095-9B80-4B3A-8370-B460A108AE2BQ28082925-503C0A7F-9B19-450B-A821-09653883F61EQ28117449-8BE15CA6-4296-4495-B793-B175D0614CC9Q28387987-F6DF7ABD-0413-427B-9B4F-AAC30F8C17C3Q28512362-03D6D661-B731-46AC-ACED-9F36C5E535A4Q30252643-862348B6-4C66-4218-A5CA-1E84EA8B46B9Q30279270-5A937007-6546-4F1B-BFA2-74BE766715B1Q33349194-6019C104-1E4B-4994-ACC6-409195C7BDE5Q33534484-1B20FA32-0C8B-40F6-81F1-21E8072AFD44Q33616799-8D1A0228-68A1-481D-87FF-9BFF98142730Q33744807-C3E47701-FB3B-4316-896C-92B7D0A8B18FQ33748389-449724A6-E88C-4233-88CA-5EFE6298D201Q33757232-6C4D0876-08FD-4885-A128-85775B5A7D29Q33858923-5AD340EB-15CC-44B9-9F56-19B112F41250Q33863389-2EF9D69C-0FF6-41F5-9FA5-433855ACA9ADQ33869277-9BC011AC-7C33-4431-9A65-DDCB6A1CF7A2Q33880106-78BE2F1F-2457-4418-B86A-ED8103F9446BQ33883187-4F519FC5-91BC-4127-9261-E14725FE0F41Q33913185-0AD60102-18CC-4BEF-B62D-E24FCE6091B3Q33925412-F66FF6BD-16FD-426A-A0E8-FAAD407A27FAQ34026175-275650C2-8F35-4CA9-9E83-AF8FA4603A23Q34094269-16405C50-4045-4E29-AAAF-3DCA4B688AC3Q34151980-FAB49808-D62F-4A19-8E8E-E825C3E1F03EQ34180238-16BDEE63-7356-48F2-A64D-E143F27B8A93Q34189142-A69C5628-10E9-4E60-8CAB-3A73DA370982Q34250374-21B03856-6CF6-44E1-8EC8-01A69474ADAFQ34313440-8ED19D2C-5DAB-4544-BE21-1884D67F5FC1Q34333590-FCCC965A-6D8F-4081-990E-690D0E23FAFE
P2860
description
2006 nî lūn-bûn
@nan
2006 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2006 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
name
The Steap proteins are metalloreductases
@ast
The Steap proteins are metalloreductases
@en
The Steap proteins are metalloreductases
@nl
type
label
The Steap proteins are metalloreductases
@ast
The Steap proteins are metalloreductases
@en
The Steap proteins are metalloreductases
@nl
prefLabel
The Steap proteins are metalloreductases
@ast
The Steap proteins are metalloreductases
@en
The Steap proteins are metalloreductases
@nl
P2093
P2860
P921
P3181
P1433
P1476
The Steap proteins are metalloreductases
@en
P2093
Alice McDonald
Dean R Campagna
Robert S Ohgami
P2860
P304
P3181
P356
10.1182/BLOOD-2006-02-003681
P407
P577
2006-04-11T00:00:00Z