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  4. Conditional deletion of ferritin H in mice induces loss of iron storage and liver damage
 
research article

Conditional deletion of ferritin H in mice induces loss of iron storage and liver damage

Darshan, Deepak
•
Vanoaica, Liviu
•
Richman, Larry  
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2009
Hepatology

Ferritin plays a central role in iron metabolism by acting both as iron storage and detoxifying protein. We have generated a ferritin H allele with loxP sites and studied the conditional ferritin H deletion in adult mice. Ten days after Mx-Cre induced deletion, ferritin H mRNA was below 5% in the liver, spleen and bone marrow of deleted mice compared to control littermates. Mice lost their cellular iron stores indicating the requirement of ferritin H in iron deposition. Serum iron and transferrin saturation were slightly increased and correlated with a 2-fold increased iver hepcidin 1 mRNA and a reduced duodenal DcytB mRNA level. Under normal iron regimen, deleted mice survived for 2 years without visible disadvantage. Mice fed on a high iron diet prior to ferritin H deletion suffered from severe liver damage. Similarly, ferritin H deleted mouse embryonic fibroblasts showed rapid cell death after exposure to iron salt in the medium. This was reversed by wildtype ferritin H but not by a ferritin H mutant lacking ferroxidase activity. Cell death was preceded by an increase in cytoplasmic free iron, reactive oxygen species, and mitochondrial depolarization. Conclusion: Our results provide evidence that the iron storage function of ferritin plays a major role in preventing iron-mediated cell and tissue damage.

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Type
research article
DOI
10.1002/hep.23058
Web of Science ID

WOS:000269551100025

Author(s)
Darshan, Deepak
Vanoaica, Liviu
Richman, Larry  
Beermann, Friedrich  
Kühn, Lukas C.  
Date Issued

2009

Published in
Hepatology
Volume

50

Issue

3

Start page

852

End page

860

Subjects

targeted gene deletion

•

Mx-Cre

•

hepcidin 1

•

macrophage

•

mouse embryonic fibroblast

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GR-KUHN  
GR-BEERMANN  
Available on Infoscience
June 3, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/40329
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