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Familial Mediterranean Fever in Crete: a genetic and structural biological approach in a population of 'intermediate
E Fragouli1, E Eliopoulos, E Petraki
1Department of Internal Medicine, Medical School, University of Crete, Heraklion, Crete, Greece.
Abstract:
Familial Mediterranean Fever (FMF) is an autosomal, recessively inherited disease, characterized by recurrent and short attacks of fever with serosal inflammation that are caused by mutations in MEFV gene that encodes pyrin protein. To date, more than 70 disease-associated mutations have been identified, almost all of them representing missense nucleotide changes. FMF is very common among patients with Mediterranean ancestry, although the exact prevalence is not yet known, Greeks are considered to be at 'intermediate risk'. In the present study, we studied FMF patients in natives of Crete, a population sharing a common genetic and cultural background. The spectrum of MEFV gene mutations in 71 patients as well as 158 healthy controls was studied by performing a molecular analysis focused on the 12 most frequent FMF-associated mutations. We found that 59 of 71 (83.1%) FMF patients had at least one MEFV mutation, five patients were homozygotes and 54 heterozygotes for FMF-associated mutations. No mutations were detected in 12 patients (16.9%). As in high-risk populations, common MEFV mutations were found in Cretan FMF patients, with the M694V being the most penetrant. M694V and M694I mutations were associated with severe phenotypes, with many patients presenting with uncommon clinical manifestations such as erysipelas-like erythema or renal disturbances. Of interest, 20 (37%) of our heterozygous FMF patients presented with a severe phenotype. Population genetics analysis showed an FMF carrier frequency in healthy Cretan population of approximately 6% (1:17) and places Cretans closer to the Western rather than Eastern populations of the Mediterranean basin. Finally, we constructed a three-dimensional model showing the interaction of the PRYSPRY domain of pyrin with caspase-1 onto which we mapped MEFV mutations, classified according to disease severity. In this model, the 'flexible loops' of caspase-1 appear to have no access to some positions that have been previously associated with mild disease, suggesting that alternative pathogenic pathways leading to FMF need to be explored.
Insights
Familial Mediterranean Fever (FMF) genetic analysis in Crete reveals common MEFV mutations, with M694V being most penetrant. This study identifies a 6% carrier frequency, placing Cretans with Western Mediterranean populations.
Area of Science:
- Genetics
- Molecular Biology
- Population Genetics
Background:
- Familial Mediterranean Fever (FMF) is an autosomal recessive disorder caused by MEFV gene mutations.
- FMF is prevalent in Mediterranean populations, with Greeks at intermediate risk.
- The genetic spectrum of FMF in Cretan natives was previously uncharacterized.
Purpose of the Study:
- To investigate the spectrum of MEFV gene mutations in FMF patients from Crete.
- To determine the carrier frequency of FMF mutations in the healthy Cretan population.
- To correlate MEFV mutations with disease severity and explore pathogenic pathways.
Main Methods:
- Molecular analysis of the 12 most frequent FMF-associated MEFV mutations in 71 FMF patients and 158 healthy controls.
- Population genetics analysis to estimate carrier frequency.
- Three-dimensional modeling of pyrin-caspase-1 interaction to map MEFV mutations.
Main Results:
- 83.1% of FMF patients carried at least one MEFV mutation; 16.9% had no detected mutations.
- The M694V mutation was the most penetrant, and M694V/M694I mutations were linked to severe FMF phenotypes.
- FMF carrier frequency in healthy Cretans is approximately 6% (1:17), aligning them with Western Mediterranean populations.
Conclusions:
- Common MEFV mutations are present in Cretan FMF patients, similar to high-risk populations.
- A significant proportion of heterozygous patients exhibited severe phenotypes, suggesting complex genotype-phenotype correlations.
- The study provides insights into FMF genetics in Crete and suggests alternative pathogenic pathways for FMF.
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