Literature DB >> 10719381

HFE gene mutations in coronary atherothrombotic disease.

R T Calado1, R F Franco, A Pazin-Filho, M V Simões, J A Marin-Neto, M A Zago.   

Abstract

Although iron can catalyze the production of free radicals involved in LDL lipid peroxidation, the contribution of iron overload to atherosclerosis remains controversial. The description of two mutations in the HFE gene (Cys282Tyr and His63Asp) related to hereditary hemochromatosis provides an opportunity to address the question of the association between iron overload and atherosclerosis. We investigated the prevalence of HFE mutations in 160 survivors of myocardial infarction with angiographically demonstrated severe coronary atherosclerotic disease, and in 160 age-, gender- and race-matched healthy control subjects. PCR amplification of genomic DNA followed by RsaI and BclI restriction enzyme digestion was used to determine the genotypes. The frequency of the mutant Cys282Tyr allele was identical among patients and controls (0.022; carrier frequency, 4.4%), whereas the mutant His63Asp allele had a frequency of 0.143 (carrier frequency, 27.5%) in controls and of 0.134 (carrier frequency, 24.5%) in patients. Compound heterozygotes were found in 2 of 160 (1.2%) controls and in 1 of 160 (0.6%) patients. The finding of a similar prevalence of Cys282Tyr and His63Asp mutations in the HFE gene among controls and patients with coronary atherothrombotic disease, indirectly questions the possibility of an association between hereditary hemochromatosis and atherosclerosis.

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Year:  2000        PMID: 10719381     DOI: 10.1590/s0100-879x2000000300007

Source DB:  PubMed          Journal:  Braz J Med Biol Res        ISSN: 0100-879X            Impact factor:   2.590


  7 in total

1.  The prevalence of haemochromatosis gene mutations in the West of Scotland and their relation to ischaemic heart disease.

Authors:  S Campbell; D K George; S D Robb; R Spooner; T A McDonagh; H J Dargie; P R Mills
Journal:  Heart       Date:  2003-09       Impact factor: 5.994

2.  Iron overload diminishes atherosclerosis in apoE-deficient mice.

Authors:  E A Kirk; J W Heinecke; R C LeBoeuf
Journal:  J Clin Invest       Date:  2001-06       Impact factor: 14.808

3.  Analysis of HFE genes C282Y, H63D, and S65D in patients with hyperferritinemia from northeastern Brazil.

Authors:  Gioconda Dias Rodrigues Leão; Juliana Mendonça Freire; Andrea Luciana Araújo Cunha Fernandes; Taissa Maria Moura de Oliveira; Nilma Dias Leão; Erica Aires Gil; Roberto Chaves de Vasconcelos; João Paulo da Silva Azevedo; Valéria Soraya de Farias Sales; Telma Maria de Araújo Moura Lemos; Marcos Dias Leão; Francisco Fernandes do Nascimento; James Farley Rafael Maciel; Rodrigo Villar de Freitas; Aldair de Souza Paiva; Geraldo Barroso Cavalcanti
Journal:  J Clin Lab Anal       Date:  2014-01-06       Impact factor: 2.352

4.  HFE mutations in heart disease.

Authors:  Terence Dunn; Derek Blankenship; Nicole Beal; Richard Allen; Eliot Schechter; William Moore; Ghazala Perveen; June Eichner
Journal:  Heart Vessels       Date:  2008-09-20       Impact factor: 2.037

5.  Considerations on the food fortification policy in Brazil.

Authors:  José Murilo Martins
Journal:  Rev Bras Hematol Hemoter       Date:  2011

6.  Haemochromatosis gene mutations and risk of coronary heart disease: a west of Scotland coronary prevention study (WOSCOPS) substudy.

Authors:  I R Gunn; F K Maxwell; D Gaffney; A D McMahon; C J Packard
Journal:  Heart       Date:  2004-03       Impact factor: 5.994

7.  Effects of Iron Overload on the Activity of Na,K-ATPase and Lipid Profile of the Human Erythrocyte Membrane.

Authors:  Leilismara Sousa; Israel J P Garcia; Tamara G F Costa; Lilian N D Silva; Cristiane O Renó; Eneida S Oliveira; Cristiane Q Tilelli; Luciana L Santos; Vanessa F Cortes; Herica L Santos; Leandro A Barbosa
Journal:  PLoS One       Date:  2015-07-21       Impact factor: 3.240

  7 in total

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