Identification of a common variant in the TFR2 gene implicated in the physiological regulation of serum iron levels

Irene Pichler(University of Lübeck), Cosetta Minelli(Eurac Research), Serena Sanna(Institute of Genetic and Biomedical Research), Toshiko Tanaka(National Institute on Aging), Christine Schwienbacher(University of Ferrara), Silvia Naitza(Institute of Genetic and Biomedical Research), Eleonora Porcu(Institute of Genetic and Biomedical Research), Cristian Pattaro(Eurac Research), Fabio Busonero(Institute of Genetic and Biomedical Research), Alessandra Zanon(University of Lübeck), Andrea Maschio(Institute of Genetic and Biomedical Research), Scott A. Melville(University of Lübeck), Maria Grazia Piras(Institute of Genetic and Biomedical Research), Dan L. Longo(National Institute on Aging), Jack M. Guralnik, Dena G. Hernandez(National Institute on Aging), Stefania Bandinelli(Azienda Sanitaria di Firenze), Elmar Aigner(Salzburger Landeskliniken), Anthony Murphy(Eli Lilly (United States)), Victor J. Wroblewski(Eli Lilly (United States)), Fabio Marroni(Eurac Research), Igor Theurl(Innsbruck Medical University), Carsten Gnewuch(University of Regensburg), Eric E. Schadt(Pacific Biosciences (United States)), Manfred Mitterer, David Schlessinger(National Institute on Aging), Luigi Ferrucci(National Institute on Aging), Derrick R. Witcher(Eli Lilly (United States)), Andrew A. Hicks(University of Lübeck), Günter Weiß(Innsbruck Medical University), Manuela Uda(Institute of Genetic and Biomedical Research), Peter P. Pramstaller(Ospedale di Bolzano)
Human Molecular Genetics
December 24, 2010
Cited by 76Open Access
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Abstract

The genetic determinants of variation in iron status are actively sought, but remain incompletely understood. Meta-analysis of two genome-wide association (GWA) studies and replication in three independent cohorts was performed to identify genetic loci associated in the general population with serum levels of iron and markers of iron status, including transferrin, ferritin, soluble transferrin receptor (sTfR) and sTfR-ferritin index. We identified and replicated a novel association of a common variant in the type-2 transferrin receptor (TFR2) gene with iron levels, with effect sizes highly consistent across samples. In addition, we identified and replicated an association between the HFE locus and ferritin and confirmed previously reported associations with the TF, TMPRSS6 and HFE genes. The five replicated variants were tested for association with expression levels of the corresponding genes in a publicly available data set of human liver samples, and nominally statistically significant expression differences by genotype were observed for all genes, although only rs3811647 in the TF gene survived the Bonferroni correction for multiple testing. In addition, we measured for the first time the effects of the common variant in TMPRSS6, rs4820268, on hepcidin mRNA in peripheral blood (n = 83 individuals) and on hepcidin levels in urine (n = 529) and observed an association in the same direction, though only borderline significant. These functional findings require confirmation in further studies with larger sample sizes, but they suggest that common variants in TMPRSS6 could modify the hepcidin-iron feedback loop in clinically unaffected individuals, thus making them more susceptible to imbalances of iron homeostasis.


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