Nramp 2 is mutated in the anemic Belgrade ( b ) rat: Evidence of a role for Nramp2 in endosomal iron transport
Nramp 2 is mutated in the anemic Belgrade ( b ) rat: Evidence of a role for Nramp2 in endosomal iron transport
The Belgrade ( b ) rat has an autosomal recessively inherited, microcytic, hypochromic anemia associated with abnormal reticulocyte iron uptake and gastrointestinal iron absorption. The b reticulocyte defect appears to be failure of iron transport out of endosomes within the transferrin cycle. Aspects of this phenotype are similar to those reported for the microcytic anemia ( mk ) mutation in the mouse. Recently, mk has been attributed to a missense mutation in the gene encoding the putative iron transporter protein Nramp2. To investigate the possibility that Nramp2 was also mutated in the b rat, we established linkage of the phenotype to the centromeric portion of rat chromosome 7. This region exhibits synteny to the chromosomal location of Nramp2 in the mouse. A polymorphism within the rat Nramp2 gene cosegregated with the b phenotype. A glycine-to-arginine missense mutation (G185R) was present in the b Nramp2 gene, but not in the normal allele. Strikingly, this amino acid alteration is the same as that seen in the mk mouse. Functional studies of the protein encoded by the b allele of rat Nramp2 demonstrated that the mutation disrupted iron transport. These results confirm the hypothesis that Nramp2 is the protein defective in the Belgrade rat and raise the possibility that the phenotype shared by mk and b animals is unique to the G185R mutation. Furthermore, the phenotypic characteristics of these animals indicate that Nramp2 is essential both for normal intestinal iron absorption and for transport of iron out of the transferrin cycle endosome.
- Boston Children's Hospital United States
- Howard Hughes Medical Institute United States
- State University of New York at Potsdam United States
- Brigham and Women's Faulkner Hospital United States
Anemia, Hypochromic, Genotype, Genetic Linkage, Iron, Molecular Sequence Data, Glycine, Chromosome Mapping, Membrane Proteins, Biological Transport, Endosomes, Arginine, Mice, Iron-Binding Proteins, Mutation, Animals, Amino Acid Sequence, Carrier Proteins, Codon, Cation Transport Proteins, Alleles
Anemia, Hypochromic, Genotype, Genetic Linkage, Iron, Molecular Sequence Data, Glycine, Chromosome Mapping, Membrane Proteins, Biological Transport, Endosomes, Arginine, Mice, Iron-Binding Proteins, Mutation, Animals, Amino Acid Sequence, Carrier Proteins, Codon, Cation Transport Proteins, Alleles
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