Metal ion transporters in mammals: structure, function and pathological implications
- 1 July 1999
- journal article
- review article
- Published by Wiley in The Journal of Physiology
- Vol. 518 (1) , 1-12
- https://doi.org/10.1111/j.1469-7793.1999.0001r.x
Abstract
Despite the importance of metal ions in several catalytic functions, there has been, until recently, little molecular information available on the mechanisms whereby metal ions are actively taken up by mammalian cells. The classical concept for iron uptake into mammalian cells has been the endocytosis of transferrin-bound Fe3+ by the transferrin receptor. Studies with hypotransferrinaemic mice revealed that in the intestine mucosal transferrin is derived from the plasma and that its presence is not required in the intestinal lumen for dietary iron absorption. This suggests that, at least in the intestine, other non-receptor-mediated uptake systems exist. The molecular identification of metal ion transporters is of great importance, in particular since an increasing number of human diseases are thought to be related to disturbances in metal ion homeostasis, including metal ion overload and deficiency disorders (i.e. anaemia, haemochromatosis, Menkes disease, Wilson's disease), and neurodegenerative diseases (i.e. Alzheimer's, Friedreich's ataxia and Parkinson's diseases). Furthermore, susceptibilities to mycobacterial infections are caused by metal ion transporter defects. The pathological implications of disturbed metal ion homeostasis confirm the vital roles these metal ions play in the catalytic function of many enzymes, in gene regulation (zinc-finger proteins), and in free radical homeostasis. Recent insights have significantly advanced our knowledge of how metal ions are taken up or released by mammalian cells. The purpose of this review is to summarize these advances and to give an overview on the growing number of mammalian metal ion transporters.Keywords
This publication has 113 references indexed in Scilit:
- Copper transport and its alterations in Menkes and Wilson diseasesPublished by Elsevier ,2001
- Intracellular distribution of the Wilson’s disease gene product (atpase7b) after in vitro and in vivo exogenous expression in hepatocytes from the LEC rat, an animal model of Wilson’s diseaseHepatology, 1998
- A novel gene involved in zinc transport is deficient in the lethal milk mouseNature Genetics, 1997
- Respiratory deficiency due to loss of mitochondrial DNA in yeast lacking the frataxin homologueNature Genetics, 1997
- Studies of human, mouse and yeast homologues indicate a mitochondrial function for frataxinNature Genetics, 1997
- Microcytic anaemia mice have a mutation in Nramp2, a candidate iron transporter geneNature Genetics, 1997
- The molecular mechanisms of the metabolism and transport of iron in normal and neoplastic cellsBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 1997
- Microcytic anemia with iron malabsorption: An inherited disorder of iron metabolismAmerican Journal of Hematology, 1996
- A Permease-Oxidase Complex Involved in High-Affinity Iron Uptake in YeastScience, 1996
- Body iron excretion in manPublished by Elsevier ,1968