Involvement of the modifier gene of a human Mendelian disorder in a negative selection process

Isabelle Jéru1, Hasmik Hayrapetyan, Philippe Duquesnoy

  • 1INSERM, U933, Paris, France.

Plos One
|November 6, 2009
PubMed
Abstract

Insights

Familial Mediterranean fever (FMF) patients with renal amyloidosis (RA) risk are influenced by the SAA1 gene. A deficit of SAA1 alpha homozygotes in Karabakhian patients suggests negative selection, impacting FMF pathophysiology.

Area of Science:

  • Human genetics
  • Population genetics
  • Disease pathophysiology

Background:

  • Familial Mediterranean fever (FMF) is a Mendelian autoinflammatory disorder.
  • Renal amyloidosis (RA) is a severe complication of FMF.
  • SAA1 gene variants are known modifiers of RA risk in FMF patients.

Purpose of the Study:

  • To investigate the role of SAA1 gene polymorphisms in RA development among FMF patients in Armenia and Karabakh.
  • To compare the frequencies of SAA1 genotypes and MEFV mutations in populations with differing RA prevalence.
  • To explore population-specific genetic selection mechanisms influencing FMF-associated RA.

Main Methods:

  • Genotyping of SAA1 and MEFV (p.Met694Val) in FMF patients and controls from Armenia and Karabakh.
  • Comparison of genotype frequencies between the two regions.
  • Analysis of Hardy-Weinberg equilibrium (HWE) to detect population stratification and selection.

Main Results:

  • Similar frequencies of p.Met694Val homozygotes were observed in Armenian and Karabakhian FMF patients.
  • A significant deficit of SAA1 alpha homozygotes was found in Karabakhian FMF patients (4%) compared to Armenian FMF patients (24%).
  • Deviations from HWE were observed in opposite directions for SAA1 genotypes in FMF patients from the two regions, while controls adhered to HWE.

Conclusions:

  • The excess of SAA1 alpha homozygotes in Armenian patients may reflect recruitment bias towards severe phenotypes.
  • The deficit of SAA1 alpha/alpha genotype in Karabakhian patients suggests negative selection against this genotype.
  • This study highlights the role of SAA1 in FMF pathophysiology and provides the first evidence of HWE deviations and selection involving a modifier gene in a Mendelian disorder.

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