Science · 1998 · 199 citations · 19 references
Iron DeficiencyCp SynthesisHereditary CeruloplasminNutrient BioavailabilityBiochemistryHeme HomeostasisIron MetabolismMetalloproteinPhysiologyHeme SignalingCellular Iron UptakeIron UptakeMetabolismMedicineCell BiologyRedox BiologyHepcidinOxidative Stress
Individuals with hereditary ceruloplasmin (Cp) deficiency have profound iron accumulation in most tissues, which suggests that Cp is important for normal release of cellular iron. Here, in contrast to expectations, Cp was shown to increase iron uptake by HepG2 cells, increasing the apparent affinity for the substrate by three times. Consistent with its role in iron uptake, Cp synthesis was regulated by iron supply and was increased four- to fivefold after iron depletion. Unlike other iron controllers that are posttranscriptionally regulated, Cp synthesis was transcriptionally regulated. Thus, iron-deficient cells could increase Cp synthesis to maintain intracellular iron homeostasis, so that defects would lead to global accumulation of iron in tissues.
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A Permease-Oxidase Complex Involved in High-Affinity Iron Uptake in Yeast
Robert S. Stearman, Daniel Yuan, Yuko Yamaguchi‐Iwai et al. · Science · 1996 · 679 citations
The FET3 gene of S. cerevisiae encodes a multicopper oxidase required for ferrous iron uptake
Candice C. Askwith, David Eide, Anthony Van Ho et al. · Cell · 1994 · 669 citations
Daniel Yuan, Robert S. Stearman, Andrew Dancis et al. · Proceedings of the National Academy of Sciences · 1995 · 440 citations · Full text