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.

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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