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Evidence of digenic inheritance in autoinflammation-associated genes
Vassos Neocleous1, Stefania Byrou, Meropi Toumba
1Department of Molecular Genetics, Function and Therapy, The Cyprus Institute of Neurology and Genetics, 1683 Nicosia, Cyprus. laphylac@cing.ac.cy.
Abstract:
Familial Mediterranean fever (FMF) has traditionally been considered as a monogenic autosomal recessive disorder caused by mutations in the MEFV gene with highest incidence among Mediterranean populations. In a considerable number of patients with typical FMF, only one MEFV mutation was identified and the possibility that more than one autoinflammatory gene may be responsible for their disease was investigated. In the present study, an extensive search for possible mutations in three hereditary recurrent fever (HRF) genes was performed in 128 MEFV heterozygous Greek-Cypriots clinically diagnosed based on their phenotype with FMF-like disease from a previous study. Sequence analysis was performed for MVK, TNFRSF1A and NLRP3 genes which is also known to cause HRFs. In total, three patients were identified with heterozygous mutations and a second mutation in an autoinflammatory gene. Two patients carried a MEFV mutation and a NLRP3 mutation, and an additional third carried a MEFV mutation and a TNFRSF1A mutation. Patient 1 carried MEFV p.[Val726Ala] (NM_000243.2:c.2177T>C) and NLRP3 p.[Val198Met] (NM_001243133.1:c.592G>A) variants and patient 2 carried MEFV p.[Glu148Gln] (NM_000243.2:c.442G>C) variant which is of uncertain significance and NLRP3 p.[Arg176Trp] (NM_001243133.1:c.526C>T). Lastly, patient 3 was identified to carry MEFV p.[Met694Val] (NM_000243.2:c.2080A>G) and TNFRSF1A p.[Arg121Gln] (NM_001065.3:c.362G>A) variants. The results from this study indicate that screening of genes known to cause HRFs in patients already identified with a single MEFV mutation, can reveal quite rare but potentially causative mutational combinations at different loci. Such interaction provide further evidence for possible locus-locus interactions and phenotypes resulting from digenic inheritance.
Insights
Familial Mediterranean fever (FMF) may involve multiple genes. This study found rare combinations of MEFV gene mutations with other autoinflammatory genes (NLRP3, TNFRSF1A) in FMF-like patients, suggesting digenic inheritance.
Area of Science:
- Genetics
- Immunology
- Molecular Biology
Background:
- Familial Mediterranean fever (FMF) is typically a monogenic autosomal recessive disorder linked to MEFV gene mutations.
- A subset of patients with FMF-like symptoms present with only one identified MEFV mutation, suggesting potential involvement of other genes.
- Hereditary recurrent fevers (HRFs) can be caused by mutations in various genes, including MVK, TNFRSF1A, and NLRP3.
Purpose of the Study:
- To investigate the potential role of mutations in MVK, TNFRSF1A, and NLRP3 genes in Greek-Cypriot patients with FMF-like disease and a single MEFV mutation.
- To explore the possibility of digenic inheritance and locus-locus interactions in patients presenting with FMF-like phenotypes.
Main Methods:
- Genetic sequencing was performed on 128 MEFV heterozygous patients with FMF-like phenotypes.
- Analysis focused on identifying mutations in the MVK, TNFRSF1A, and NLRP3 genes.
- Patient genotypes were correlated with their clinical presentation.
Main Results:
- Three patients were identified with a heterozygous MEFV mutation and a second mutation in another autoinflammatory gene.
- Two patients carried combined MEFV and NLRP3 mutations.
- One patient carried combined MEFV and TNFRSF1A mutations, indicating rare digenic inheritance patterns.
Conclusions:
- Screening additional HRF genes in patients with a single MEFV mutation can uncover rare, potentially causative mutational combinations.
- The findings support the hypothesis of locus-locus interactions and digenic inheritance contributing to FMF-like phenotypes.
- This expands the understanding of the genetic basis of autoinflammatory disorders beyond single-gene mutations.
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