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Regulatory networks for the control of body iron homeostasis and their dysregulation in HFE mediated hemochromatosis.

Although the recent identification of several genes has extended our knowledge on the maintenance of body iron homeostasis, their tissue specific expression patterns and the underlying regulatory networks are poorly understood. We studied C57black/Sv129 mice and HFE knockout (HFE -/-) variants thereof as a model for hemochromatosis, and investigated the expression of iron metabolism genes in the duodenum, liver, and kidney as a function of dietary iron challenge. In HFE +/+ mice dietary iron supplementation increased hepatic expression of hepcidin which was paralleled by decreased iron regulatory protein (IRP) activity, and reduced expression of divalent metal transporter-1 (DMT-1) and duodenal cytochrome b (Dcytb) in the enterocyte. In HFE -/- mice hepcidin formation was diminished upon iron challenge which was associated with decreased hepatic transferrin receptor (TfR)-2 levels. Accordingly, HFE -/- mice presented with high duodenal Dcytb and DMT-1 levels, and increased IRP and TfR expression, suggesting iron deficiency in the enterocyte and increased iron absorption. In parallel, HFE -/- resulted in reduced renal expression of Dcytb and DMT-1. Our data suggest that the feed back regulation of duodenal iron absorption by hepcidin is impaired in HFE -/- mice, a model for genetic hemochromatosis. This change may be linked to inappropriate iron sensing by the liver based on decreased TfR-2 expression, resulting in reduced circulating hepcidin levels and an inappropriate up-regulation of Dcytb and DMT-1 driven iron absorption. In addition, iron excretion/reabsorption by the kidneys may be altered, which may aggravate progressive iron overload.

Animals↗

Frequency of the C282Y mutation of hemochromatosis in five French populations.

Hereditary hemochromatosis mutation 845A (C282Y) in the HFE gene was recently described, and the C282Y frequencies were reported for various world populations. The aim of this study was to determine the Y allele frequencies of the C282Y mutation for five French populations. The most elevated value (= 5.6%) was obtained for Bretons, in accordance to the hypothesis indicating a Celtic origin of the hereditary hemochromatosis mutation.

Adult↗

Celtic origin of the C282Y mutation of hemochromatosis.

The C282Y mutation in the HFE gene is the main mutation causing hemochromatosis, and C282Y frequencies have been reported for various European populations. The aim of this review is to compile the Y allele frequencies of the C282Y mutation for twenty European populations. The most elevated value (6.88%) is observed in residual Celtic populations in UK and France, in accordance to the hypothesis of Simon et al. concerning a Celtic origin of the hereditary hemochromatosis mutation.

Europe↗

Two novel missense mutations of the HFE gene (I105T and G93R) and identification of the S65C mutation in Alabama hemochromatosis probands.

Sequencing of HFE exons 2, 3, 4, and 5, and of portions of introns 2, 4, and 5 revealed novel mutations in four of twenty hemochromatosis probands who lacked C282Y homozygosity, C282Y/H63D compound heterozygosity, or H63D homozygosity. Probands 1 and 2 were heterozygous for previously undescribed mutations: exon 2, nt 314T-->C (314C; I105T), and exon 2, nt 277G-->(277C; G93R), respectively; these probands were also heterozygous for H63D and C282Y, respectively. Probands 3 and 4 were heterozygous for a previously described but uncommon HFE mutation: exon 2, nt 193A-->T (193T; S65C). Proband 3 was also heterozygous for C282Y and had porphyria cutanea tarda, and Proband 4 had hereditary stomatocytosis. Each of these four probands had iron overload. In each proband with an uncommon HFE coding region mutation, I105T, G93R, and S65C occurred on separate chromosomes from those with the C282Y or H63D mutations. Neither I105T, G93R, nor S65C occurred as spontaneous mutations in our probands. The I105T and G93R mutations were linked to haplotypes bearing HLA-A3,-B7 and HLA-A2,-B62, respectively. The S65C mutation was linked to a haplotype characterized by HLA-32. Sixteen other probands did not have an uncommon HFE exon mutation. In 176 normal control subjects, two were heterozygous for S65C, but I105T and G93R were not detected. Nine of twenty probands were heterozygous and two probands were homozygous for a previously described base-pair change at intron 2, nt 3671T-->C. One proband without a detectable missense mutation had a previously described intron 5 allele (nt 6700G-->A). Heterozygosity for a previously described base-pair change in intron 4 (nt 5636T-->C) was detected in all persons we studied who also had the S65C mutation. One proband was heterozygous for a previously undescribed base-pair change at intron 5 (nt 5807A-->G). We conclude that uncommon HFE exon and intron mutations may be discovered among hemochromatosis patients who have "atypical" HFE genotypes.

Adult↗

Hereditary hemochromatosis: HFE mutation analysis in Greeks reveals genetic heterogeneity.

Hereditary hemochromatosis (HH) is common among Caucasians; reported disease frequencies vary from 0.3 to 0.8%. Identification of a candidate HFE gene in 1996 was soon followed by the description of two ancestral mutations, i.e., c.845G-->A (C282Y) and c.187C-->G (H63D). To these was recently added the mutation S65C, which may represent a simple polymorphism. The incidence of HH in Greece is unknown but clinical cases are rare. Also unknown is the carrier frequency of the two mutant alleles. A first estimate of the latter is given in the present report. It is based on data from the genetic analysis of 10 unrelated patients of Greek origin who were referred to our center for genotyping and 158 unselected male blood donors. The allele frequencies for the C282Y and H63D mutations were 0.003 and 0.145, respectively. The C282Y allele was detected in 50% of HH patients. This is considerably lower than the frequencies reported for HH patients in the U.S.A. (82%) and France (91 %) and closer to that reported in Italy (64%). Five patients did not carry any known HFE mutation; three may represent cases of juvenile hemochromatosis, given their early onset with iron overload, hypogonadism, and heart disease. We suggest that genetic heterogeneity is more prominent in Southern Europe. It is also possible that the penetrance of the responsible genes is different across the Mediterranean.

Adult↗

Frequency analysis and allele map in favor of the celtic origin of the C282Y mutation of hemochromatosis.

After the main hereditary hemochromatosis mutation C282Y in the HFE gene was described, we report here the C282Y frequencies for various European populations. The aim of this meta-analysis is to compile the Y allele frequencies of the C282Y mutation for 53 European populations, representing a total of 9265 unrelated people representing control samples. The most elevated values are observed in residual Celtic populations in Ireland, in the United Kingdom, and in France, in accordance with the initial hypothesis of Simon et al. (Prog. Med. Genet. 4, 135-168, 1980) concerning a Celtic origin of the hereditary hemochromatosis mutation.

Alleles↗

Penetrance of hemochromatosis.

We undertook a three-year screening program for mutations of the HFE gene among 41,000 subjects attending the Kaiser Permanente Health Appraisal Center in San Diego, California. Our results show that the C282Y and H63D mutations of the HFE gene associated with hemochromatosis have measurable and consistent effects on iron indicators and are associated with liver disorders, but have no measurable effect on other iron overload-related symptoms and life-expectancy. The very low clinical penetrance of the HFE mutations must be taken into account in calculating cost/benefit and risk/benefit ratios in screening for hemochromatosis.

Amino Acid Substitution↗

Bone mineral density in men with genetic hemochromatosis and HFE gene mutation.

Genetic hemochromatosis (GH) is an iron overload disorder mainly due to the C282Y mutation of the HFE gene. The possibility of bone involvement was only recently recognized. The aims of this study were to assess bone mineral density (BMD) and bone remodeling in men with GH, and to examine the influence of iron overload. Thirty-eight men (mean age 47.2+/-9.4 years) with well-defined HFE-related GH were studied. They had an important iron overload with liver iron concentration to age ratio >2.5, no previous venesection therapy and were C282Y homozygotes (n=37) or compound C282Y/H63D heterozygote (n=1). BMD measured by DXA was 0.925+/-0.15 g/cm2 at the lumbar spine (LS) and 0.778+/-0.13 g/cm2 at the femoral neck (FN). Osteopenia (T-score<-1 SD) was observed in 78.9% of patients and osteoporosis (T-score<-2.5 SD) in 34.2%. Vitamin D levels were normal, and no 1-84 parathyroid hormone dysfunction was found. Hypogonadism was found in only 13.2% of patients. Patients with hypogonadism had lower LS BMD than eugonadal patients (0.788+/-0.16 and 0.954+/-0.14 g/cm2). Bone remodeling and parathyroid hormone levels were lower in patients with cirrhosis, but BMD values were similar to those in patients without cirrhosis. FN BMD appeared to fall with rising hepatic iron concentrations (r=-0.399). We conclude that there is significant bone loss in HFE-related hemochromatosis that cannot solely be explained by hypogonadism or cirrhosis. Further investigations are needed to determine the role of iron overload itself.

Biomarkers↗

Mutations of the HFE gene among Turkish hereditary hemochromatosis patients.

Since the discovery of the HFE gene, C282Y and H63D mutations have been reported as significantly correlated with clinically manifested hereditary hemochromatosis (HH). As the other genes involved in iron metabolism have been described, non-HFE cases of HH have been identified. Since in the general Turkish population, the C282Y mutation is not found and the H63D mutation is of high frequency, we aimed to determine mutations in the HFE genes in our patients with HH. The HFE gene of the five patients with HH were sequenced. C282Y mutation was absent, and all HH patients were heterozygote for H63D mutation. No other mutation was found in HFE gene by sequencing. Although the higher allele frequency of the H63D mutation in Turkish HH patients than in the general population implies a role of the H63D mutation in iron overload, there is a strong possibility that Turkish HH patients have non-HFE hemochromatosis.

Adult↗

Psychological adjustment and knowledge about hereditary hemochromatosis in a clinic-based sample: a prospective study.

This study assessed psychological adjustment and quality of life relative to population-based norms and knowledge about hereditary hemochromatosis in a sample of 101 patients who attended a hemochromatosis clinic. Participants were assessed prior to their clinic visit, and two weeks and 12 months after attendance, using self-administered questionnaires. Mean Mental Health Component Scores from the Medical Outcomes Study 36-Item Short-Form Health Survey (SF-36) (45.3, 95% CI 43.2, 47.4) were as compromised as those found amongst stroke victims (45.9, 95% CI 42.8, 49.0) who had participated in a national health survey. Recall of the genetic testing result was less than optimal, in that only 69.3% of those with genetic testing results knew whether they carried one or two mutations. This study demonstrates that patients would benefit from routine assessment of psychological distress and referral to mental health professionals of those whose levels of distress suggest a need for clinical intervention. Results also show that patients may benefit from strategies aimed at improving recall of genetic testing results.

Adaptation, Psychological↗

Juvenile hemochromatosis due to G320V/Q116X compound heterozygosity of hemojuvelin in an Irish patient.

Hemojuvelin (HJV) is a recently discovered gene responsible for 1q-linked juvenile hemochromatosis. The majority of mutations characterized in this gene are rare and private, except G320V, identified in patients from different countries. Here, we report the clinical features and the molecular study of a young Irish patient presenting with severe cardiac disease related to iron overload. We sequenced the coding region and the exon-intron boundaries of genes associated with juvenile hemochromatosis, HAMP and HJV encoding hepcidin and hemojuvelin respectively. Two heterozygous HJV mutations were identified: the G320V mutation and the new Q116X mutation that cause a premature stop codon in the protein. This finding increases the number of mutations identified in HJV gene and underlines that the G320V is a recurrent mutation, even in Northern Europe.

Adolescent↗

Autosomal dominant hereditary hemochromatosis associated with two novel Ferroportin 1 mutations in Spain.

Hereditary hemochromatosis is a common disorder of iron metabolism most frequently associated with mutations in the HFE gene. Hereditary hemochromatosis may be caused by other genetic mutations including those in the SLC40A1 gene. This report describes the clinical and laboratory findings of two Spanish families with autosomal dominant iron overload associated with previously unrecognized Ferroportin 1 mutations (p.R88T and p.I180T). The phenotype of iron overload in the patients carrying these mutations could correspond to the group of clinical mutations that lose their iron export function.

Adolescent↗

Circulating gastrin is increased in hemochromatosis.

Gastric acid production is important in intestinal iron absorption. The peptide hormone gastrin exists in both amidated and non-amidated forms, which stimulate and potentiate gastric acid secretion, respectively. Since non-amidated gastrins require ferric ions for biological activity in vitro, this study investigated the connection between iron status and gastrin by measurement of circulating gastrin concentrations in mice and humans with hemochromatosis. Gastrin concentrations are increased in the plasma and gastric mucosa of Hfe(-/-) mice, and in the sera of humans with HFE-related hemochromatosis. The discovery of a relationship between iron status and circulating gastrin concentrations opens a new perspective on the mechanisms of iron homeostasis.

Animals↗

Relation of hemochromatosis with hepatocellular carcinoma: epidemiology, natural history, pathophysiology, screening, treatment, and prevention.

HH is a common inherited disorder of iron metabolism affecting about 1 out of 250 individuals of Northern European decent. Many of these patients do not have evident phenotypic expression and do not develop significant iron loading. Some patients, however, develop progressive iron overload and cirrhosis. These individuals are at risk of developing HCC. Cirrhotics with hemochromatosis should undergo regular screening for HCC. If HCC is identified early, treatment with either resection or liver transplantation is optimal. Palliative measures, including ablative therapy and chemoembolization, can be used. With increasing clinical recognition,hemochromatosis should be diagnosed earlier and progression to cirrhosis and HCC should be minimized.

Carcinoma, Hepatocellular↗

The role of hereditary hemochromatosis in aseptic loosening following primary total hip arthroplasty.

Hereditary hemochromatosis (HH) results in increased iron absorption and subsequent deposition in tissue. This condition occurs predominantly in individuals of Northern European and Celtic origin with Ireland having one of the highest allele frequencies in the world. This study examines the hypothesis that homozygosity for either the C282Y or H63D mutations in the HFE gene may be associated with aseptic loosening following total hip arthroplasty (THA). Two groups of individuals were screened for the C282Y and H63D mutations associated with HH. Group 1 were individuals who had undergone primary hip arthroplasty and group 2 were individuals who had undergone revision hip arthroplasty for aseptic loosening. Exclusion criteria included rheumatoid or other inflammatory arthropathies and revision due to causes other than aseptic loosening. Significantly more patients in the revision THA group were homozygous for the C282Y genotype (P = 0.014). Aseptic loosening occurred earlier in these patients (P = 0.009), in particular in the patients who had clinical signs of hemochromatosis. No association was seen with the H63D mutation and revision THA. The incidence of HH in the group of primary THA patients was no higher than the background incidence. Patients who require primary THA and who are homozygous for the C282Y mutation have an increased risk of developing aseptic loosening, leading to revision THA. Moreover C282Y homozygosity appears to be associated with earlier aseptic loosening than in individuals without the C282Y mutation.

Adult↗

[HFE hemochromatosis: pathogenic and diagnostic approach].

HFE hemochromatosis is the most frequent genetic iron overload disease. It is linked to the C282Y mutation of the HFE protein, protein encoded by the HFE gene, which is located on chromosome 6. The mechanisms accounting for iron excess are not only digestive hyperabsorption of iron but also excessive recycling of macrophagic iron coming from erythrophagocytosis and secreted into the blood. Both mechanisms are linked to an HFE-related hepatic failure in producing hepcidin, a key hormone of body iron regulation. The marked phenotypic variability of C282Y homozygosity expression is likely related to both genetic and environmental factors. The HFE gene discovery has rendered non invasive the positive diagnostic of HFE hemochromatosis, which is now based first on an increased level of plasma transferrin saturation leading to the request of the HFE mutation. Then, hepatic MRI is a reliable method to quantify iron overload. The HFE gene discovery has also paved the road of an enlarged field of differential diagnoses corresponding to novel entities of non-HFE related genetic iron overload syndromes.

Amino Acid Substitution↗

Mixture models of serum iron measures in population screening for hemochromatosis and iron overload.

Homozygosity for the C282Y mutation of the hemochromatosis gene on chromosome 6p (HFE) is a common genetic trait that increases susceptibility to iron overload. The authors describe and apply methodology developed for the analysis of phenotypic and genotypic data from 46,136 non-Hispanic Caucasians, a subset of the multi-ethnic cohort enrolled in the Hemochromatosis and Iron Overload Screening (HEIRS) Study. For analysis of the distribution of transferrin saturation (TS), mixtures of normal distributions were considered and the expectation-maximization (EM) algorithm was applied for parameter estimation. Maximized log-likelihoods were compared, and significance was assessed by resampling. Sensitivity, specificity, and predictive values from the modeled subpopulations were compared with the actual observed genotypes for C282Y and H63D mutations in the HFE gene. A strong association between HFE genotype and TS subpopulations was found in these data collected from different geographic regions, confirming the external validity of the statistical approach when applied to population-based data. It was concluded that mixture modeling of phenotypic data may provide a clinical guide for screening with gender-specific thresholds to identify potential samples for genetic testing.

Adult↗

Fluorescent multicolor multiplex homogeneous assay for the simultaneous analysis of the two most common hemochromatosis mutations.

We report the development of a qualitative fluorescent multiplex homogeneous assay designed for the detection of the two most common hemochromatosis mutations using dual-labeled fluorescent probes. The assay is able to detect four allelic variants in a single closed tube using a single thermocycling protocol. The procedure combines the great sensitivity of the polymerase chain reaction, the specificity provided by allele-specific oligonucleotide hybridization using the 5(') nuclease assay format, and the higher throughput of a multicolor fluorescence detection procedure. Genomic DNA was prepared from whole blood specimens using standard procedures. Following DNA sample preparation, two regions of the hemochromatosis gene (HFE) including the H63D and C282Y mutations were coamplified and detected in real-time by four different fluorescently labeled allele-specific oligonucleotide probes. Assay specificity was demonstrated by a blind methods comparison study that included 37 DNA samples from individuals with a known HFE genotype. Results from the study showed that the multicolor multiplex HFE assay unambiguously classified all possible genotypes for the HFE gene C282Y and H63D mutations(1). This technique will be useful for research and molecular diagnostic laboratories and can be easily adapted for the detection of other single nucleotide polymorphisms.

Alleles↗