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Updated: Oct 5, 2026

Measurement of Heme Synthesis Levels in Mammalian Cells
Published on: July 9, 2015
HFE gene and hereditary hemochromatosis: a HuGE review. Human Genome Epidemiology
E H Hanson1, G Imperatore, W Burke
1United States Air Force School of Aerospace Medicine, Brooks Air Force Base, San Antonio, TX, USA. erichansonmdmph@yahoo.com
Insights
Hereditary hemochromatosis (HHC) is an iron metabolism disorder linked to HFE gene mutations. While C282Y homozygosity is common, other HFE genotypes also contribute to HHC risk.
Area of Science:
- Genetics
- Metabolic Disorders
- Human Physiology
Background:
- Hereditary hemochromatosis (HHC) is an autosomal recessive disorder impacting iron metabolism.
- It leads to excessive iron absorption and deposition in vital organs, potentially causing severe health complications.
- The HFE gene, located on chromosome 6p21.3, is the primary genetic determinant of HHC.
Purpose of the Study:
- To review the prevalence and correlation of different HFE gene mutations with Hereditary hemochromatosis.
- To analyze the frequency of specific HFE genotypes in HHC probands and the general population.
- To discuss the penetrance and clinical implications of HFE mutations in HHC.
Main Methods:
- Literature review of studies on HFE gene variants and Hereditary hemochromatosis.
- Analysis of allelic variants, including C282Y and H63D mutations.
- Examination of genotype frequencies in HHC patients and general populations.
Main Results:
- C282Y homozygosity is frequently observed in HHC probands.
- Compound heterozygotes (C282Y/H63D), H63D homozygotes, and heterozygotes for both mutations are also identified.
- Prevalence of C282Y/C282Y genotype is 0.4% in the general population, with varying heterozygosity rates across ethnic groups.
Conclusions:
- HFE gene mutations, including C282Y and H63D, are strongly associated with Hereditary hemochromatosis.
- Population screening for HHC is currently not recommended due to uncertainties in screening strategies and management.
- Further research is needed to clarify penetrance and optimize HHC management.
Abstract:
Hereditary hemochromatosis (HHC) is an autosomal recessive disorder of iron metabolism characterized by increased iron absorption and deposition in the liver, pancreas, heart, joints, and pituitary gland. Without treatment, death may occur from cirrhosis, primary liver cancer, diabetes, or cardiomyopathy. In 1996, HFE, the gene for HHC, was mapped on the short arm of chromosome 6 (6p21.3). Two of the 37 allelic variants of HFE described to date (C282Y and H63D) are significantly correlated with HHC. Homozygosity for the C282Y mutation was found in 52-100% of previous studies on clinically diagnosed probands. In this review, 5% of HHC probands were found to be compound heterozygotes (C282Y/H63D), and 1.5% were homozygous for the H63D mutation; 3.6% were C282Y heterozygotes, and 5.2% were H63D heterozygotes. In 7% of cases, C282Y and H63D mutations were not present. In the general population, the frequency of the C282Y/C282Y genotype is 0.4%. C282Y heterozygosity ranges from 9.2% in Europeans to nil in Asian, Indian subcontinent, African/Middle Eastern, and Australasian populations. The H63D carrier frequency is 22% in European populations. Accurate data on the penetrance of the different HFE genotypes are not available. Extrapolating from limited clinical observations in screening studies, an estimated 40--70% of persons with the C282Y homozygous genotype will develop clinical evidence of iron overload. A smaller proportion will die from complications of iron overload. To date, population screening for HHC is not recommended because of uncertainties about optimal screening strategies, optimal care for susceptible persons, laboratory standardization, and the potential for stigmatization or discrimination.
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