FBN1, TGFBR1, and the Marfan-craniosynostosis/mental retardation disorders revisited

L C Adès1, K Sullivan, A Biggin

  • 1Marfan Research Group, The Children's Hospital at Westmead, New South Wales, Australia. lesleya@chw.edu.au

Insights

Transforming growth factor beta (TGF-beta) signaling pathway disorders encompass Marfan syndrome and related conditions. Genetic mutations in TGFBR1 and FBN1 are implicated in the pathogenesis of these extracellular matrix disorders.

Area of Science:

  • Genetics and Molecular Biology
  • Cardiovascular Genetics
  • Connective Tissue Disorders

Background:

  • Recent identification of TGFBR2 mutations in Marfan syndrome II and TGFBR1/TGFBR2 mutations in Loeys-Dietz aortic aneurysm syndrome.
  • Established link between abnormal transforming growth factor beta (TGF-beta) signaling and Marfan syndrome (MFS) pathogenesis.

Observation:

  • Phenotypic and genotypic analysis of five individuals with conditions within the MFS, marfanoid (MD)-craniosynostosis (CS), or MD-mental retardation (MR) spectrum.
  • Patient 1: MFS with abnormal cranial dura. Patient 2: Severe early onset MFS with abnormal skull.
  • Patients 3 & 4: Probable Furlong syndrome (FS). Patient 5: MD features, MR, and a chromosome 15q21.1q21.3 deletion.

Findings:

  • Two recurrent heterozygous FBN1 mutations identified in Patients 1 and 2.
  • Novel heterozygous de novo TGFBR1 mutation found in Patients 3 and 4, with previously demonstrated altered fibrillin-1 processing.
  • Heterozygous FBN1 deletion identified in Patient 5.

Implications:

  • Suggests that Marfan syndrome and related entities, including MD-CS syndromes, may be unified under the spectrum of TGF-beta signaling pathway disorders.
  • Perturbation of extracellular matrix homeostasis and/or remodeling due to abnormal TGF-beta signaling is the core pathogenetic mechanism.
  • Potential for reclassification of these distinct clinical entities within a broader TGF-beta signaling pathway disorder framework.

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