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Am J Physiol Gastrointest Liver Physiol 282: G534-G539, 2002. First published November 21, 2001; doi:10.1152/ajpgi.00199.2001
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Vol. 282, Issue 3, G534-G539, March 2002

The ferrireductase paraferritin contains divalent metal transporter as well as mobilferrin

Jay N. Umbreit, Marcel E. Conrad, Lucille N. Hainsworth, and Marcia Simovich

University of South Alabama Cancer Center, Mobile, Alabama 36688

Inorganic iron can be transported into cells in the absence of transferrin. Ferric iron enters cells utilizing an integrin-mobilferrin-paraferritin pathway, whereas ferrous iron uptake is facilitated by divalent metal transporter-1 (DMT-1). Immunoprecipitation studies using antimobilferrin antibody precipitated the previously described large-molecular-weight protein complex named paraferritin. It was previously shown that paraferritin functions as an intracellular ferrireductase, reducing ferric iron to ferrous iron utilizing NADPH as the energy source. It functions in the pathway for the cellular uptake of ferric iron. This multipeptide protein contains a number of active peptides, including the ferric iron binding protein mobilferrin and a flavin monooxygenase. The immunoprecipitates and purified preparations of paraferritin also contained DMT-1. This identifies DMT-1 as one of the peptides constituting the paraferritin complex. Since paraferritin functions to reduce newly transported ferric iron to ferrous iron and DMT-1 can transport ferrous iron, these findings suggest a role for DMT-1 in conveyance of iron from paraferritin to ferrochelatase, the enzyme utilizing ferrous iron for the synthesis of heme in the mitochondrion.

iron absorption; calreticulin; flavin monooxygenase


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