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Published on: July 14, 2016
[Role of genetics in familial Mediterranean fever]
T Kallinich1,2, B Orak3,4, H Wittkowski5
1Klinik für Pädiatrie m.S. Pneumologie und Immunologie, Charité Universitätsmedizin Berlin, Augustenburger Platz 1, 13353, Berlin, Deutschland. tilmann.kallinich@charite.de.
Abstract:
Familial Mediterranean fever (FMF) is caused by mutations within the Mediterranean fever (MEFV) gene. These gain of function mutations lead to an increased activation of the inflammasome pyrin with a subsequent disproportional proinflammatory reaction. Classically, in FMF patients two pathogenic mutations affecting both alleles are found in the molecular genetic analysis; however, it is well known that the phenotype can also be caused either by mutations with lower penetrance or unknown significance. Furthermore, in a significant number of patients only one or even no MEFV mutations can be detected. Heterozygous mutation carriers who do not suffer from classical FMF, can also present with other signs of inflammation, e. g. subclinical increased inflammation markers, associated inflammatory diseases or unclassified symptoms. Thus, FMF does not follow a classical autosomal recessive inheritance and a variable gene dose effect has to be considered, which is furthermore modulated by other mostly unknown genetic variants and environmental factors. This article summarizes the broad spectrum of clinical presentations associated with MEFV mutations and analyzes the effect of the gene dose on the phenotypical expression. Furthermore, the impact of the molecular genetic analysis on the diagnostics of a patient and on the individualized management of the disease is discussed.
Insights
Familial Mediterranean fever (FMF) is linked to MEFV gene mutations. The study explores how varying gene doses and other factors influence FMF presentation and inflammation, impacting diagnosis and treatment.
Area of Science:
- Genetics
- Immunology
- Rheumatology
Background:
- Familial Mediterranean fever (FMF) is an autoinflammatory disorder caused by mutations in the Mediterranean fever (MEFV) gene.
- Gain-of-function MEFV mutations activate the inflammasome pyrin, leading to excessive inflammation.
- Classical FMF diagnosis typically involves two pathogenic mutations, but atypical presentations are common.
Purpose of the Study:
- To summarize the clinical spectrum associated with MEFV mutations.
- To analyze the impact of gene dose on phenotypic expression in FMF.
- To discuss the role of genetic analysis in FMF diagnosis and personalized management.
Main Methods:
- Review of clinical presentations associated with MEFV mutations.
- Analysis of genotype-phenotype correlations.
- Discussion of molecular genetic testing's impact on patient management.
Main Results:
- FMF presentation is influenced by mutation penetrance, gene dose, and potentially other genetic/environmental factors.
- Heterozygous carriers may exhibit subclinical inflammation or unclassified symptoms.
- A variable gene dose effect, not classical autosomal recessive inheritance, explains FMF's spectrum.
Conclusions:
- MEFV mutations present a broad clinical spectrum beyond classical FMF.
- Understanding gene dose effects is crucial for accurate diagnosis and personalized FMF management.
- Molecular genetic analysis aids in individualized patient care for FMF.
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