Literature DB >> 10986220

HFE gene mutation (C282Y) and phenotypic expression among a hospitalised population in a high prevalence area of haemochromatosis.

S Distante1, J P Berg, K Lande, E Haug, H Bell.   

Abstract

BACKGROUND: Previous studies have shown that up to 0.5% of the Caucasian population is homozygous for the HFE gene C282Y mutation. High prevalence values have been reported in Northern Europe. To what extent the presence of this mutation is associated with overt clinical haemochromatosis is unclear. AIM: To determine the prevalence of the C282Y allele in a hospitalised population of an acute medical department, and study the phenotypic expression in the homozygotes.
METHODS: Blood samples were obtained from 2027 hospitalised patients; 1900 Caucasians and 127 non-Caucasians. Serum iron, transferrin, and ferritin were measured at admission. The presence of the HFE gene mutation was determined by polymerase chain reaction based analysis. Follow up fasting blood samples were obtained from patients homozygous for the mutation.
RESULTS: Fourteen of the 1900 Caucasian subjects (0.74%) were homozygous and 224 (11.8%) were heterozygous for the C282Y mutation, including 32 subjects (1.7%) who were compound heterozygous for the C282Y and H63D mutations. Ten of 14 (71%) homozygous patients displayed mild to moderate biochemical expression of haemochromatosis with a serum ferritin level <550 microg/l, two (14%) patients were "non expressing", and two of five in whom liver biopsies were carried out had cirrhosis, including one with advanced hepatocellular carcinoma.
CONCLUSIONS: The prevalence of C282Y homozygosity in a hospitalised population was 0.74%. However, the majority of homozygous patients displayed mild to moderate biochemical expression. C282Y mutation screening may detect individuals that do not develop haemochromatosis. Transferrin saturation and ferritin, which are used as first line screening in haemochromatosis, may be highly unreliable in the presence of an inflammatory process.

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Year:  2000        PMID: 10986220      PMCID: PMC1728064          DOI: 10.1136/gut.47.4.575

Source DB:  PubMed          Journal:  Gut        ISSN: 0017-5749            Impact factor:   23.059


  31 in total

1.  Polymorphism in intron 4 of HFE may cause overestimation of C282Y homozygote prevalence in haemochromatosis.

Authors:  G P Jeffrey; S Chakrabarti; R A Hegele; P C Adams
Journal:  Nat Genet       Date:  1999-08       Impact factor: 38.330

2.  Prevalence of hemochromatosis among 11,065 presumably healthy blood donors.

Authors:  C Q Edwards; L M Griffen; D Goldgar; C Drummond; M H Skolnick; J P Kushner
Journal:  N Engl J Med       Date:  1988-05-26       Impact factor: 91.245

3.  Haemochromatosis gene C282Y homozygotes in an elderly male population.

Authors:  G Willis; J Z Wimperis; K C Smith; I W Fellows; B A Jennings
Journal:  Lancet       Date:  1999-07-17       Impact factor: 79.321

4.  High prevalence of the hemochromatosis-associated Cys282Tyr HFE gene mutation in a healthy Norwegian population in the city of Oslo, and its phenotypic expression.

Authors:  S Distante; J P Berg; K Lande; E Haug; H Bell
Journal:  Scand J Gastroenterol       Date:  1999-05       Impact factor: 2.423

5.  Decreased concentrations of tumor necrosis factor-alpha in supernatants of monocytes from homozygotes for hereditary hemochromatosis.

Authors:  V R Gordeuk; S Ballou; G Lozanski; G M Brittenham
Journal:  Blood       Date:  1992-04-01       Impact factor: 22.113

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Journal:  Medicine (Baltimore)       Date:  1955-12       Impact factor: 1.889

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Authors:  L Hallberg; E Björn-Rasmussen; I Jungner
Journal:  J Intern Med       Date:  1989-04       Impact factor: 8.989

9.  Value of hepatic iron measurements in early hemochromatosis and determination of the critical iron level associated with fibrosis.

Authors:  M L Bassett; J W Halliday; L W Powell
Journal:  Hepatology       Date:  1986 Jan-Feb       Impact factor: 17.425

Review 10.  Twenty-four hour variation of transferrin saturation in treated and untreated haemochromatosis homozygotes.

Authors:  C Q Edwards; L M Griffen; J Kaplan; J P Kushner
Journal:  J Intern Med       Date:  1989-11       Impact factor: 8.989

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  7 in total

1.  Heteroduplex analysis for the three common HFE variants: methodology, reliability and analysis of over 5000 requests for testing.

Authors:  Jeanne Kingston; Derrick Bowen; Marion Sweeney; Susan Lawless; Helen Jackson; Mark Worwood
Journal:  J Clin Pathol       Date:  2006-11-01       Impact factor: 3.411

2.  Targeted screening for genetic haemochromatosis: a combined phenotype/genotype approach.

Authors:  M Bhavnani; D Lloyd; J Marples; K Pendry; M Worwood
Journal:  J Clin Pathol       Date:  2006-05       Impact factor: 3.411

3.  Iron loading and morbidity among relatives of HFE C282Y homozygotes identified either by population genetic testing or presenting as patients.

Authors:  C A McCune; D Ravine; K Carter; H A Jackson; D Hutton; J Hedderich; M Krawczak; M Worwood
Journal:  Gut       Date:  2005-09-20       Impact factor: 23.059

Review 4.  Recent advances in understanding haemochromatosis: a transition state.

Authors:  K J H Robson; A T Merryweather-Clarke; E Cadet; V Viprakasit; M G Zaahl; J J Pointon; D J Weatherall; J Rochette
Journal:  J Med Genet       Date:  2004-10       Impact factor: 6.318

5.  Frequencies of the hereditary hemochromatosis allele in different populations. Comparison of previous phenotypic methods and novel genotypic methods.

Authors:  Nils Milman; Palle Pedersen; Torkil á Steig; Gitte Vedel Melsen
Journal:  Int J Hematol       Date:  2003-01       Impact factor: 2.490

Review 6.  METABOLISM OF IRON STORES.

Authors:  Hiroshi Saito
Journal:  Nagoya J Med Sci       Date:  2014-08       Impact factor: 1.131

7.  The evolutionary adaptation of the C282Y mutation to culture and climate during the European Neolithic.

Authors:  Kathleen M Heath; Jacob H Axton; John M McCullough; Nathan Harris
Journal:  Am J Phys Anthropol       Date:  2016-01-22       Impact factor: 2.868

  7 in total

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