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Association of modifiers and other genetic factors explain Marfan syndrome clinical variability
Melodie Aubart1,2, Steven Gazal3,4, Pauline Arnaud1,5
1Laboratory for Vascular Translational Science, INSERM U1148, DHU FIRE, Centre Hospitalo-Universitaire Xavier Bichat (APHP), 46 rue Henri Huchard, Paris, 75018, France.
Abstract:
Marfan syndrome (MFS) is a rare autosomal dominant connective tissue disorder related to variants in the FBN1 gene. Prognosis is related to aortic risk of dissection following aneurysm. MFS clinical variability is notable, for age of onset as well as severity and number of clinical manifestations. To identify genetic modifiers, we combined genome-wide approaches in 1070 clinically well-characterized FBN1 disease-causing variant carriers: (1) an FBN1 eQTL analysis in 80 fibroblasts of FBN1 stop variant carriers, (2) a linkage analysis, (3) a kinship matrix association study in 14 clinically concordant and discordant sib-pairs, (4) a genome-wide association study and (5) a whole exome sequencing in 98 extreme phenotype samples.Three genetic mechanisms of variability were found. A new genotype/phenotype correlation with an excess of loss-of-cysteine variants (P = 0.004) in severely affected subjects. A second pathogenic event in another thoracic aortic aneurysm gene or the COL4A1 gene (known to be involved in cerebral aneurysm) was found in nine individuals. A polygenic model involving at least nine modifier loci (named gMod-M1-9) was observed through cross-mapping of results. Notably, gMod-M2 which co-localizes with PRKG1, in which activating variants have already been described in thoracic aortic aneurysm, and gMod-M3 co-localized with a metalloprotease (proteins of extra-cellular matrix regulation) cluster. Our results represent a major advance in understanding the complex genetic architecture of MFS and provide the first steps toward prediction of clinical evolution.
Insights
Genetic modifiers influence Marfan syndrome (MFS) variability. Researchers identified three mechanisms, including a genotype-phenotype link and polygenic inheritance, offering insights into MFS clinical evolution.
Area of Science:
- Genetics
- Human Genetics
- Medical Genetics
Background:
- Marfan syndrome (MFS) is a rare, autosomal dominant connective tissue disorder.
- It is caused by variants in the FBN1 gene, with significant clinical variability.
- Prognosis is often linked to aortic aneurysm and dissection risk.
Purpose of the Study:
- To identify genetic modifiers contributing to Marfan syndrome variability.
- To understand the complex genetic architecture of MFS.
- To lay groundwork for predicting clinical evolution in MFS patients.
Main Methods:
- Genome-wide approaches were used in 1070 FBN1 variant carriers.
- Methods included FBN1 eQTL analysis, linkage analysis, kinship matrix association, GWAS, and whole exome sequencing.
- Specific analyses focused on fibroblasts, sib-pairs, and extreme phenotypes.
Main Results:
- Three genetic mechanisms of variability were identified.
- A genotype/phenotype correlation showed an excess of loss-of-cysteine variants in severe cases.
- A polygenic model with at least nine modifier loci (gMod-M1-9) was observed, including loci near PRKG1 and extracellular matrix metalloproteases.
Conclusions:
- The study elucidates key genetic factors driving Marfan syndrome variability.
- Findings reveal a complex genetic architecture involving multiple modifier loci.
- This research is a significant step towards predicting Marfan syndrome clinical outcomes.
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