Targeted deletion of the mouse Mitoferrin1 gene: from anemia to protoporphyria

MB Troadec, D Warner, J Wallace… - Blood, The Journal …, 2011 - ashpublications.org
MB Troadec, D Warner, J Wallace, K Thomas, GJ Spangrude, J Phillips, O Khalimonchuk
Blood, The Journal of the American Society of Hematology, 2011ashpublications.org
Mitoferrin1 is 1 of 2 homologous mitochondrial iron transporters and is required for
mitochondrial iron delivery in developing erythroid cells. We show that total deletion of Mfrn1
in embryos leads to embryonic lethality. Selective deletion of Mfrn1 in adult hematopoietic
tissues leads to severe anemia because of a deficit in erythroblast formation. Deletion of
Mfrn1 in hepatocytes has no phenotype or biochemical effect under normal conditions. In the
presence of increased porphyrin synthesis, however, deletion of Mfrn1 in hepatocytes …
Abstract
Mitoferrin1 is 1 of 2 homologous mitochondrial iron transporters and is required for mitochondrial iron delivery in developing erythroid cells. We show that total deletion of Mfrn1 in embryos leads to embryonic lethality. Selective deletion of Mfrn1 in adult hematopoietic tissues leads to severe anemia because of a deficit in erythroblast formation. Deletion of Mfrn1 in hepatocytes has no phenotype or biochemical effect under normal conditions. In the presence of increased porphyrin synthesis, however, deletion of Mfrn1 in hepatocytes results in a decreased ability to convert protoporphyrin IX into heme, leading to protoporphyria, cholestasis, and bridging cirrhosis. Our results show that the activity of mitoferrin1 is required to manage an increase in heme synthesis. The data also show that alterations in heme synthesis within hepatocytes can lead to protoporphyria and hepatotoxicity.
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