Related Experiment Video
Updated: Aug 15, 2026

Electrophoretic Mobility Shift Assay (EMSA) for the Study of RNA-Protein Interactions: The IRE/IRP Example
Published on: December 4, 2014
Evidence for a link between iron metabolism and Nramp1 gene function in innate resistance against Mycobacterium avium
1Laboratory of Microbiology and Immunology of Infection, Institute for Molecular and Cell Biology, University of Porto, Portugal.
Abstract:
In the mouse, the progression of the Mycobacterium avium infection is highly dependent on the Nramp1 gene. Strains of mice that express the Nramp1D169 allele are highly susceptible to M. avium infections, while Nramp1G169 strains of mice can control them. Recently, the Nramp1 gene has been cloned and characterized as coding a transmembrane protein, probably involved in divalent cation transport. One possible function of this protein could be the transport of iron out of the parasite-harbouring phagosome. Previous work in our lab has shown both in vitro (in macrophage cultures) and in vivo, that the growth rate of M. avium is highly dependent on the amount of iron available in the system. To try to correlate this with the Nramp1 gene function, BALB/c (susceptible) and C.D2 (resistant) congenic mice were treated for 20 days with different doses of iron-dextran, so as to induce different degrees of iron overload, and infected with M. avium 2447. Iron administration increased M. avium growth in infected organs in a dose-dependent manner at the same time as it decreased the difference in mycobacterial growth between the two mouse strains. These results indicate that an excess of iron hampers Nramp1-encoded function, strongly suggesting a direct involvement of the Nramp1-encoded protein in the transport of this cation.
Insights
Iron overload exacerbates Mycobacterium avium infections in mice by hindering the Nramp1 gene
Area of Science:
- Immunology
- Genetics
- Microbiology
Background:
- The Nramp1 gene influences Mycobacterium avium infection susceptibility in mice.
- Nramp1 encodes a transmembrane protein potentially involved in divalent cation transport, possibly iron.
Purpose of the Study:
- To investigate the role of iron in Nramp1 function during M. avium infection.
- To correlate iron availability with Nramp1 gene function in mouse models.
Main Methods:
- BALB/c (susceptible) and C.D2 (resistant) congenic mice were treated with iron-dextran to induce iron overload.
- Mice were infected with M. avium 2447 after iron treatment.
- Mycobacterial growth in infected organs was quantified.
Main Results:
- Iron administration increased M. avium growth in a dose-dependent manner.
- Increased iron reduced the difference in mycobacterial growth between susceptible and resistant mouse strains.
- Excess iron appeared to impair Nramp1-encoded function.
Conclusions:
- Nramp1 protein is likely directly involved in transporting cations, specifically iron.
- Iron overload negatively impacts Nramp1 function, increasing susceptibility to M. avium infections.
Related Concept Videos
Mechanism of Antibiotic Resistance in MRSA
Clinical Significance of Antibiotic Resistance

