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Publication : Erythrocytic ferroportin reduces intracellular iron accumulation, hemolysis, and malaria risk.

First Author  Zhang DL Year  2018
Journal  Science Volume  359
Issue  6383 Pages  1520-1523
PubMed ID  29599243 Mgi Jnum  J:260761
Mgi Id  MGI:6149398 Doi  10.1126/science.aal2022
Citation  Zhang DL, et al. (2018) Erythrocytic ferroportin reduces intracellular iron accumulation, hemolysis, and malaria risk. Science 359(6383):1520-1523
abstractText  Malaria parasites invade red blood cells (RBCs), consume copious amounts of hemoglobin, and severely disrupt iron regulation in humans. Anemia often accompanies malaria disease; however, iron supplementation therapy inexplicably exacerbates malarial infections. Here we found that the iron exporter ferroportin (FPN) was highly abundant in RBCs, and iron supplementation suppressed its activity. Conditional deletion of the Fpn gene in erythroid cells resulted in accumulation of excess intracellular iron, cellular damage, hemolysis, and increased fatality in malaria-infected mice. In humans, a prevalent FPN mutation, Q248H (glutamine to histidine at position 248), prevented hepcidin-induced degradation of FPN and protected against severe malaria disease. FPN Q248H appears to have been positively selected in African populations in response to the impact of malaria disease. Thus, FPN protects RBCs against oxidative stress and malaria infection.
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