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A high prevalence of HLA-H 845A mutations in hemochromatosis patients and the normal population in eastern England.

We have examined normal individuals and all the patients currently being treated for hemochromatosis at the Norfolk and Norwich hospital for mutations in the HLA-H gene. We found a gene frequency in 200 normal subjects for teh 845A (C282Y) allele of 0.085, corresponding to a carrier frequency of 17% which is among the highest reported anywhere in the world. The frequency for the less penetrant 187G (H63D) allele was 0.16 among 58 of the normal subjects, which corresponds to a carrier frequency of 32%. All 18 hemochromatosis patients were homozygous for the 845A allele which is not significantly different from other reports in our subset of 12 unrelated patients. These findings present a snapshot of a relatively stable population containing a predicted 3,500 individuals homozygous for the 845A allele but not diagnosed with hemochromatosis. This population will be an excellent model for studies on the penetrance of the 845A homozygous genotype and population screening.

Alleles↗

Transferrin receptor mutation analysis in hereditary hemochromatosis patients.

The Cys282-->Tyr mutation in the HFE gene is carried by the majority of hereditary hemochromatosis patient chromosomes, yet some patients do not seem to harbor any mutation in this gene. This suggests a possibility that these patients may have a mutation in other genes in the same pathway as HFE. We analyzed the cDNA sequences of transferrin receptor (TFR), which was recently shown to interact with HFE, in twenty-one hereditary hemochromatosis patients including sixteen individuals who did not carry a Cys282-->Tyr mutation. A nucleotide substitution (424A-->G), which resulted in the Ser142-->Gly amino acid substitution, was the only amino acid polymorphism detected in the open reading frame of the TFR gene in these patients. This amino acid substitution was a rather common polymorphism in the general population (49%) and its frequency did not significantly differ in the hereditary hemochromatosis (HH) patients regardless of the HFE genotype. Thus, amino acid changes in the TFR gene do not appear to play a role in HH even when the patients do not have a HFE mutation. However, this study does not rule out the possibility of the involvement of mutations in non-coding regions.

Amino Acid Substitution↗

Alternate splicing produces a soluble form of the hereditary hemochromatosis protein HFE.

HFE is a non-typical MHC class 1-type protein that is mutated in hereditary hemochromatosis. The purpose of this study was to identify possible splice variants of HFE mRNA and investigate the regulation of these isoforms in duodenum and liver of patients with normal and altered iron stores. RT-PCR was performed using HFE specific primers and duodenal RNA obtained from patients with hemochromatosis, iron deficiency, secondary iron overload and normal controls. The reaction products were visualized by Southern blot and identified by DNA sequence analysis. Additional studies were performed on RNA isolated from liver and a range of human tissues. A truncated (soluble) form of HFE protein was identified that lacks the transmembrane domain and occurs as a result of alternative splicing. Soluble HFE was found predominantly in the duodenum, spleen, breast, skin and testicle. In hereditary hemochromatosis full length HFE was the predominant isoform present in the duodenum similar to iron deficiency. Alternate splicing produces soluble HFE that may have a unique function to regulate cellular iron transport.

Alternative Splicing↗

Osteoporosis in HFE2 juvenile hemochromatosis. A case report and review of the literature.

Juvenile hemochromatosis (JH) is a severe form of hemochromatosis, which involves rapid iron overload and leads to organ damage, typically before the age of 30. We report a single case of a 25-year-old man suffering from juvenile hemochromatosis, with aggressive clinical manifestations, typically characterized by transaminasemia and progressive erectile dysfunction, due to hypogonadotropic hypogonadism. The clinical case appears interesting, as the patient also had secondary osteoporosis accompanied by increased bone resorption, which prevalently affected trabecular bone. Approximately 6 months after normalization of serum ferritin levels was achieved by frequent phlebotomies, he became eugonadal and bone mineral density of the lumbar spine increased. Our observations suggest that osteoporosis might occur in the state of JH even at a young age, mainly due to the deprivation of sex steroids and the direct tissue toxicity of iron.

Adult↗

Major histocompatibility complex class I associations in iron overload: evidence for a new link between the HFE H63D mutation, HLA-A29, and non-classical forms of hemochromatosis.

The present study is an analysis of the frequencies of HFE mutations in patients with different forms of iron overload compared with the frequencies found in healthy subjects from the same region. The frequencies of HLA-A and -B antigens and HLA haplotypes were also analyzed in the same subjects. The study population included: 71 healthy individuals; 39 genetically and clinically well-characterized patients with genetic hemochromatosis (HH); and 25 patients with non-classical forms of iron overload (NCH), excluding secondary hemochromatosis. All subjects were HLA-typed and HFE-genotyped by the oligonucleotide ligation assay (OLA). The gene frequencies found for the C282Y and H63D mutations of HFE were respectively: 0.03 and 0.23 in healthy individuals, 0.86 and 0.04 in HH patients, and 0.08 and 0.48 in NCH patients. An expected significant association between HH and HLA-A3 was observed, which was found to be in linkage disequilibrium with the C282Y mutation. A new association was seen, however, between HLA-A29 and NCH, in linkage disequilibrium with the H63D mutation. Again as expected, the HLA-B antigen B7 was associated with HH in linkage disequilibrium with HLA-A3. In addition, the HLA-B antigen B44 was found to be associated with NCH but not in linkage disequilibrium with either A29 or the H63D mutation. In conclusion, a new association of the HFE H63D mutation with forms of hemochromatosis other than HH and a new association between the HLA phenotype A29 and the HFE H63D mutation were found in the same patients. These findings reinforce evidence for the involvement of the major histocompatibility class I in iron metabolism, supporting the notion of a physiological role for the immunological system in the regulation of iron load.

Adult↗

Recent advances in hereditary hemochromatosis.

Hereditary hemochromatosis, a very common genetic defect in the Caucasian population, is characterized by progressive tissue iron overload which leads to irreversible organ damage if it is not treated in a timely manner. Recent developments in the field of molecular medicine have radically improved the understanding of the physiopathology and diagnosis of this disease. However, transferrin saturation and serum ferritin are still the most reliable tests for identifying subjects with hereditary hemochromatosis. Therapeutic phlebotomy is the mainstay of the treatment of this disease and the life expectancy of these patients is similar to that of the normal population if phlebotomy is started before the onset of irreversible organ damage. In this review we discuss the genetics, pathophysiology, diagnosis, clinical features, and management of hereditary hemochromatosis.

Age of Onset↗

Non-HFE hemochromatosis: genetics, pathogenesis, and clinical management.

Recent advances in our understanding of iron metabolism and the epidemiology of iron overload disorders have shown that hereditary forms of hemochromatosis can result from mutations in several iron metabolism genes other than HFE, including Hamp, HJV, TFR2, and SCL40A. These "non-HFE" forms of hemochromatosis are much rarer than HFE-related hemochromatosis but exhibit a similar phenotype, and with the exception of ferroportin disease, a similar pattern of inheritance and parenchymal iron accumulation. Therefore, these diseases can be thought of as variant forms of a primary hepatic iron overload syndrome; thus, a unified approach can be used for evaluation and diagnosis. Management generally consists of periodic phlebotomies until iron is depleted.

Adolescent↗

Role of genetic testing and liver biopsy in the diagnosis of hemochromatosis.

Hemochromatosis is the most common genetic disease affecting people of northern European ancestry. However, the disease is overdiagnosed in patients who do not have the disease and underdiagnosed in those with the disease. Although liver biopsy has been the standard diagnostic test for hemochromatosis, a new genetic blood test for a missense mutation (C282Y) of the HFE gene on chromosome 6 now provides a powerful noninvasive method of diagnosis. The clinical implications of this new genetic blood test compared with conventional liver biopsy in the diagnosis of hemochromatosis are discussed in this article.

Biopsy↗

Juvenile hemochromatosis HJV-related revealed by cardiogenic shock.

Hemochromatosis is a heterogeneous genetic disease. Juvenile hemochromatosis is a severe rare recessive autosomal disease. Herein, we report a consanguineous family linked to a mutation in the recently identified HJV gene. A refractory cardiogenic shock had revealed hemochromatosis in the proband, a 26-year-old woman, and led to the death by heart failure. Regular phlebotomies in her young sister, which was also affected, had allowed to prevent the severe complications of the disease. These two affected subjects presented an identical homozygous haplotype at the 1q21 chromosome region and a missense homozygous mutation at the HJV gene (Arg288 > Trp). This observation underlines the importance of HJV genetic testing, by complete screening of the gene, in young patients with abnormal iron parameters and hypogonadism and/or cardiac symptoms to prevent death from cardiac complications.

Adult↗

Beware of multiple comparisons: a study of symptoms associated with mutations of the HFE hemochromatosis gene.

BACKGROUND: Studies involving a large number of comparisons have a high likelihood of finding statistically significant associations by chance alone (Type 1 error). Genetic association studies are particularly prone to this pitfall. We tested the effect of multiple comparisons in a study of symptoms among subjects genotyped for mutations of the HFE hemochromatosis gene. METHODS: Two randomly selected groups were created from a dataset of 30,917 white adult subjects genotyped for the C282Y and H63D mutations of the HFE gene. Frequency of symptoms among subjects with different HFE genotypes was compared to sex-matched wild type controls in Random Group 1 (hypothesis generation). Statistically significant associations (p<0.05 by chi2) were then tested in Random Group 2 (hypothesis testing). RESULTS: A total of 101/1765 associations in men and 116/2015 associations in women were statistically significant in Random Group 1. Of these, 12 associations in men and 13 associations in women were also statistically significant in Random Group 2, 11 of which were specific to hemochromatosis. None of the remaining 14 associations (6 in men and 8 in women) involved symptoms with a biologically plausible relationship to hemochromatosis or iron overload. CONCLUSIONS: Genetic association studies should be scrutinized for the possibility of Type 1 error.

Female↗

Genotypic/phenotypic correlations in genetic hemochromatosis: evolution of diagnostic criteria.

BACKGROUND & AIMS: The identification of a candidate gene for hereditary hemochromatosis in 69%-100% of patients with hemochromatosis has resulted in a diagnostic genotypic test (C282Y). The aim of this study was to reassess the phenotypic diagnostic criteria for hemochromatosis in patients homozygous for the C282Y mutation of the HFE gene. METHODS: Transferrin saturation, ferritin, hepatic iron index, and iron removed by venesection were studied in C282Y++ homozygotes and C282Y-- putative homozygotes. RESULTS: Patients were homozygous for the C282Y mutation in 122 of 128 cases (95%). In C282Y homozygotes, the results were as follows: hepatic iron index, >1.9 in 91.3%; transferrin saturation, >55% in 90%; serum ferritin, >300 microg/L in 96% of men and >200 microg/L in 97% of women; and iron removed, >5 g in 70% of men and 73% of women. There were four homozygotes for C282Y with no biochemical evidence of iron overload. CONCLUSIONS: The sensitivity of the phenotypic tests in decreasing order was as follows: serum ferritin, hepatic iron index, transferrin saturation, and iron removed by venesection. Although the genetic test is useful in the diagnostic algorithm, this study has shown both iron-loaded patients without the mutation and homozygous patients without iron overload.

Adult↗

A novel mutation of HFE explains the classical phenotype of genetic hemochromatosis in a C282Y heterozygote.

BACKGROUND & AIMS: Most patients with genetic hemochromatosis are homozygous for a single mutation of the HFE gene (C282Y). There is a second mutation, H63D, but its role in iron overload is less conclusive. The aim of this study was to investigate the basis of iron overload in a patient with classical hemochromatosis who was only heterozygous for C282Y and negative for H63D. METHODS: Genotype for the C282Y, H63D, and S65C mutations of HFE was determined in patient RFH, his family members, and 365 controls. The HFE gene was sequenced in patient RFH. Allele-specific reverse-transcription polymerase chain reaction was performed to investigate RNA splicing. Allele frequency was determined by allele-specific oligonucleotide hybridization. RESULTS: The patient is compound heterozygous for C282Y and a novel splice site mutation (IVS3 + 1G --> T). His sister has an identical genotype and elevated serum ferritin and transferrin saturation. The novel mutation functionally alters messenger RNA splicing, causing obligate skipping of exon 3. However, the IVS3 + 1G --> T mutation was found to be rare and was not detected in 630 control European chromosomes. CONCLUSIONS: IVS3 + 1G --> T in the compound heterozygous state with C282Y results in iron overload that can progress to a severe phenotype of classical hemochromatosis. The demonstration of IVS3 +1G --> T highlights the possibility of other rare HFE mutations, particularly in C282Y heterozygotes with iron overload.

Adult↗

Hemochromatosis at the intersection of classical medicine and molecular biology.

Hemochromatosis is a genetic disease of iron overload due to intestinal hyperabsorption of iron. It is one of the most prevalent autosomal recessive diseases in Caucasian populations. Hemochromatosis causes severe visceral and metabolic complications at adulthood, which include cirrhosis, diabetes, arthropathy and cardiac failure. A major breakthrough has been the discovery, in 1996, of the HFE gene which is strongly associated with the phenotypic expression of the disease. This discovery has, very quickly, provided a powerful genetic blood test which permits, in most cases, to establish the diagnosis in a non invasive way (i.e. without a liver biopsy). Hemochromatosis can be cured by repeated venesections provided the diagnosis has been detected sufficiently early. Moreover, an efficient preventive strategy can be applied to family members and should now be proposed to the general population. Finally, the identification of the HFE gene has paved the way for the identification of new iron overload entities.

Adult↗

Expression of ferroportin in hemochromatosis liver.

Iron-regulated transporter protein 1 (IREG1 or ferroportin 1) is a transmembrane iron transporter that has been described in macrophages and hepatocytes. Ferroportin mutations have been described to result in hepatic iron overload in human pedigrees. The role of hepatic ferroportin in the pathogenesis of C282Y-linked hemochromatosis has not been clearly established. The objective was to study the expression of ferroportin mRNA and protein in C282Y-linked hemochromatosis liver and in controls. Human liver biopsies were stained with an anti-ferroportin antibody and quantitation of ferroportin at 62 kDa was done by Western blotting. mRNA was studied by real time RT-PCR. Ferroportin protein expression was increased in C282Y homozygotes (n = 23) compared to wild-type patients (n = 37) (P < 0.003). There was no significant correlation between ferroportin protein or mRNA expression (n = 25) and liver iron concentration or serum ferritin. Immunohistochemical staining demonstrated ferroportin in hepatocytes and macrophages. In conclusion, ferroportin protein is increased in iron-loaded hemochromatosis liver. The increase in ferroportin protein without an increase in mRNA is consistent with iron-mediated translational regulation through the 5'IRE in the mRNA.

Adult↗

[The hemochromatosis gene (HFE). Molecular analysis--diagnostic applications].

Hemochromatosis is the most common single gene disorder in Caucasian populations. Regulation of iron balance by intestine is impaired, leading to a widespread deposition of iron, and the disease is associated with an increased risk of hepatocellular carcinoma. Typically the excess of iron treated by phlebotomies is performed in our Blood Center. In 1996 an original paper identifying HFE as a strong candidate gene for hemochromatosis was published and two mutations were described (C282Y and H63D). The former results in a cysteine to tyrosine substitution at amino acid 282 and was found in different patient populations up to 80-90% of patients homozygous for the C282Y mutation. The frequency of the second variant H63D is also increased in hemochromatosis patients but its penetrance is probably not complete. Assessing clinical implications is a new way of identifying patients at risk for this frequent and probably underdiagnosed disease, and important because treatment by venesections is safe with a proven benefit in preventing development of the disease. Four hundred and eighty patients were included in our study and we have shown in this work a correlation between the genotype and the phenotypic presentation of the disorder, with patients homozygous for the C282Y mutation having a greater excess of iron.

Amino Acid Substitution↗

Genetic testing for HFE hemochromatosis in Australia: the value of testing relatives of simple heterozygotes.

BACKGROUND: It is unclear whether screening of relatives of C282Y and H63D heterozygotes (other than compound heterozygotes) for hemochromatosis will detect sufficient numbers of cases to justify introduction of this screening strategy. METHODS: Conditional probabilities were determined using published Australian allele frequencies and penetrance data to determine the detection rate of hemochromatosis by testing the siblings and offspring of heterozygotes (subjects with only one HFE mutation). RESULTS: The number of individuals who are at risk of developing increased body iron stores because of HFE mutations is substantially higher (1 in 80) than previously estimated. In addition, 33% of the Australian population are heterozygous for either C282Y or H63D. Based on population estimates, the relative risk to the offspring of C282Y and H63D heterozygotes of developing increased iron stores is 4.1 and 1.5, respectively, while the relative risk to each sibling is 2.3 and 1, respectively. The risk of developing clinical features of hemochromatosis or hepatic fibrosis is likely to be substantially lower. CONCLUSIONS: Although the detection rate from testing the families of unaffected heterozygotes is low, this can be justified as a clinically useful screening strategy. At the present time this strategy should be restricted to first-degree relatives of heterozygotes. Further studies are recommended to determine if cascade genetic screening is a cost-effective alternative to general population screening.

Australia↗

Population screening for hemochromatosis: a comparison of unbound iron-binding capacity, transferrin saturation, and C282Y genotyping in 5,211 voluntary blood donors.

Early diagnosis and treatment of hemochromatosis is essential to prevent organ damage. Screening strategies to detect early hemochromatosis include testing for iron overload and/or genetic testing. Voluntary blood donors numbering 5,211 were screened with unbound iron-binding capacity (UIBC), transferrin saturation (TS), and genetic testing for the C282Y mutation of the HFE gene. The study found 16 C282Y homozygotes (1 in 327), 69 compound heterozygotes, 371 simple heterozygotes, and 4,755 normals. There were 5 men and 11 women homozygotes with a mean age of 42, range 28 to 57. Mean UIBC (24 +/- 7 microL) and TS (48% +/- 17%) in homozygotes were significantly different from compound heterozygotes, simple heterozygotes, and normals (ANOVA). Only 3 homozygotes had an elevated serum ferritin. Family studies found an additional 4 iron-loaded homozygotes. Optimal thresholds were < or =28 micromol/L for UIBC and > or =46% for TS. Receiver operating characteristic (ROC) curve analysis showed an area under the curve for UIBC of 0.93 (0. 85-1.0, 95% confidence interval), and for TS of 0.83 (0.7-0.95). Screening with UIBC to preselect those for genotyping is a cost-efficient strategy for population screening for hemochromatosis.

Adult↗

Steatosis is a cofactor in liver injury in hemochromatosis.

BACKGROUND & AIMS: Obesity-related steatosis is an increasingly common histologic finding and often coexists with other chronic liver diseases. Although obesity and steatosis are recognized risk factors for more advanced fibrosis in chronic hepatitis C and alcoholic liver disease, it has not been determined whether these factors influence the progression of other diseases in which steatosis is not a feature of the primary liver insult. METHODS: We studied 214 patients with hemochromatosis who were homozygous for the C282Y substitution in HFE and had undergone liver biopsy prior to phlebotomy. RESULTS: Steatosis was present in 41.1% of these patients, and 14.5% had moderate or severe steatosis. Median serum alanine aminotransferase (ALT) and ferritin levels were higher (P < .001), and median transferrin saturation (P = .01) and hepatic iron concentration (HIC) were lower (P = .003) in subjects with steatosis compared with subjects without steatosis. Bivariate analysis revealed a significant association between steatosis and fibrosis (P = .001). Following multiple logistic regression, steatosis was independently associated with fibrosis (odds ratio [OR] 4.3, 95% confidence interval [CI]: 2.1-8.8; P < .001) along with male sex (OR, 5.1; 95% CI: 2.0-12.5; P < .001), excess alcohol consumption (males > or = 50 g/day, females > or = 40 g/day) (OR, 3.9; 95% CI: 1.8-8.5; P = .001), and hepatic iron content (OR, 1.4; 95% CI: 1.2-1.6; P < .001). Both higher BMI (OR, 3.3; 95% CI: 1.8-6.3; P < .001) and alcohol consumption (males > or = 30 g/day, females > or = 10 g/day) (OR, 3.4; 95% CI: 1.2-10.0; P = .023) were independently associated with the presence of steatosis. CONCLUSIONS: These findings indicate that obesity-related steatosis may have a role as a cofactor in liver injury in hemochromatosis. This has important clinical implications and suggests that obesity should be actively addressed in the management of patients with hemochromatosis, as well as other liver diseases.

Adolescent↗