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Inflammation, genetics, and ischemic heart disease: focus on the major histocompatibility complex (MHC) genes
Italo Porto1, Antonio Maria Leone, Filippo Crea
1Catholic University Medical School, Department of Cardiovascular Medicine, Rome, Italy. i.porto@eudoramail.com
Insights
Investigating gene polymorphisms in ischemic heart disease (IHD) reveals conflicting evidence. While some tumor necrosis factor-beta (TNF-beta) gene variants show potential links to myocardial infarction, more research is needed to confirm their role in IHD pathogenesis.
Area of Science:
- Genetics
- Cardiology
- Immunology
Background:
- Ischemic heart disease (IHD) shares inflammatory characteristics with diseases like rheumatoid arthritis.
- Gene polymorphisms within the major histocompatibility complex (MHC) are implicated in inflammatory diseases.
- MHC gene variants form haplotypes due to linkage disequilibrium.
Purpose of the Study:
- To review studies linking IHD with polymorphisms in specific MHC genes.
- To evaluate the role of tumor necrosis factor (TNF)-alpha and -beta, human leukocyte antigens, heat shock protein 70-1, hemochromatosis related gene, and complement C4 in IHD.
Main Methods:
- Systematic review of published literature.
- Analysis of gene polymorphisms including TNF-alpha, TNF-beta, HLA-DR, HSP70-1, HFE, and C4.
- Examination of linkage disequilibrium and haplotype analysis.
Main Results:
- Current data on MHC gene polymorphisms in IHD are conflicting.
- A polymorphism in the TNF-beta gene (G252A) showed a link to myocardial infarction in a Japanese population, but not in a German one.
- Study design variations and population-specific linkage disequilibrium introduce biases.
Conclusions:
- Definitive evidence for the role of these gene variants in IHD pathogenesis is lacking.
- Further research on well-defined inflammatory IHD models is warranted.
- Novel methods like haplotype analysis are crucial for assessing gene polymorphism effects.
Background:
Increasing data suggest that ischemic heart disease (IHD) shares several characteristics with common inflammatory diseases (such as rheumatoid arthritis), in which the pathogenetic role of inflammatory gene polymorphisms is well established. Variants in the genes for the major histocompatibility complex (MHC) molecules on the short arm of chromosome 6 show profound "linkage disequilibrium", leading to the formation of "haplotypes", i.e., frozen blocks of alleles travelling together through generations.
Design:
We performed a review of published studies linking IHD with gene polymorphisms of the MHC molecules tumor necrosis factor (TNF)-alpha and -beta, the class II DR human leukocyte antigens, heat shock protein 70-1, hemochromatosis related gene, and complement C4.
Results:
The emerging data are quite conflicting and do not provide definitive evidence for a role of these gene variants in the pathogenesis of IHD; a possible exception is the G252A and polymorphism in the TNF-beta gene (also known as lymphotoxin-alpha) which, in a comprehensive genome-scan linkage analysis of unrelated Japanese, but not in a smaller German population, was linked to myocardial infarction. However, some important biases appear, e.g. different study design and variable linkage disequilibrium among different populations.
Conclusions:
Preliminary positive results should encourage future studies to focus on clinical models of IHD with well-codified inflammatory components, using novel methods (such as haplotype analysis) to assess gene polymorphisms and their clinical effect.
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