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Published on: August 15, 2019
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.
Background:
Identification of modifier genes and characterization of their effects represent major challenges in human genetics. SAA1 is one of the few modifiers identified in humans: this gene influences the risk of renal amyloidosis (RA) in patients with familial Mediterranean fever (FMF), a Mendelian autoinflammatory disorder associated with mutations in MEFV. Indeed, the SAA1 alpha homozygous genotype and the p.Met694Val homozygous genotype at the MEFV locus are two main risk factors for RA.
Methodology/Principal Findings:
HERE, WE INVESTIGATED ARMENIAN FMF PATIENTS AND CONTROLS FROM TWO NEIGHBORING COUNTRIES: Armenia, where RA is frequent (24%), and Karabakh, where RA is rare (2.5%). Sequencing of MEFV revealed similar frequencies of p.Met694Val homozygotes in the two groups of patients. However, a major deficit of SAA1 alpha homozygotes was found among Karabakhian patients (4%) as compared to Armenian patients (24%) (p = 5.10(-5)). Most importantly, we observed deviations from Hardy-Weinberg equilibrium (HWE) in the two groups of patients, and unexpectedly, in opposite directions, whereas, in the two control populations, genotype distributions at this locus were similar and complied with (HWE).
Conclusions/Significance:
The excess of SAA1alpha homozygotes among Armenian patients could be explained by the recruitment of patients with severe phenotypes. In contrast, a population-based study revealed that the deficit of alpha/alpha among Karabakhian patients would result from a negative selection against carriers of this genotype. This study, which provides new insights into the role of SAA1 in the pathophysiology of FMF, represents the first example of deviations from HWE and selection involving the modifier gene of a Mendelian disorder.
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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