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January 1, 2004151 citations

Embryonic-endometrial interactions at implantation in humans.

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Structured PICO

Do epistatic interactions among candidate genes predict hypertension susceptibility in subjects from Ghana?

P
Population
Subjects from Ghana in a case-control design for hypertension
I
Intervention
Evaluation of 13 polymorphisms in 8 candidate genes (including angiotensinogen, ACE, angiotensin II receptor, and GRK4) and their epistatic interactions
C
Comparator
Normotensive controls
O
Outcome
Blood pressure phenotype (hypertension vs normotension)surrogate

Epistatic interactions among multiple genes, particularly ACE and GRK4, play a major role in hypertension susceptibility, suggesting multiple physiological pathways must be affected to predispose to the disease.

Abstract

While hypertension is a complex disease with a well-documented genetic component, genetic studies often fail to replicate findings. One possibility for such inconsistency is that the underlying genetics of hypertension is not based on single genes of major effect, but on interactions among genes. To test this hypothesis, we studied both single locus and multilocus effects, using a case-control design of subjects from Ghana. Thirteen polymorphisms in eight candidate genes were studied. Each candidate gene has been shown to play a physiological role in blood pressure regulation and affects one of four pathways that modulate blood pressure: vasoconstriction (angiotensinogen, angiotensin converting enzyme - ACE, angiotensin II receptor), nitric oxide (NO) dependent and NO independent vasodilation pathways and sodium balance (G protein-coupled receptor kinase, GRK4). We evaluated single site allelic and genotypic associations, multilocus genotype equilibrium and multilocus genotype associations, using multifactor dimensionality reduction (MDR). For MDR, we performed systematic reanalysis of the data to address the role of various physiological pathways. We found no significant single site associations, but the hypertensive class deviated significantly from genotype equilibrium in more than 25% of all multilocus comparisons (2,162 of 8,178), whereas the normotensive class rarely did (11 of 8,178). The MDR analysis identified a two-locus model including ACE and GRK4 that successfully predicted blood pressure phenotype 70.5% of the time. Thus, our data indicate epistatic interactions play a major role in hypertension susceptibility. Our data also support a model where multiple pathways need to be affected in order to predispose to hypertension.

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Cite This Study

A 2004 study studied this question.

synapsesocial.com/papers/6a82bae9040bdabcf346feb3https://doi.org/10.1159/000077387
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Combinations of Variations in Multiple Genes Are Associated With Hypertension2000 · 145 citations
  2. 2Angiotensinogen Gene Haplotype and Hypertension2003 · 116 citations
  3. 3Comprehensive analysis of the renin–angiotensin gene polymorphisms with relation to hypertension in the Japanese2000 · 62 citations
  4. 4Angiotensinogen as a risk factor for essential hypertension in Japan.1994 · 257 citations
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