Multigenerational autosomal dominant inheritance of 5p chromosomal deletions

Bin Zhang1, Marcia Willing2, Dorothy K Grange2

  • 1Department of Pathology and Immunology, Washington University School of Medicine, Saint Louis, Missouri.

Insights

Familial terminal 5p deletions, a rare autosomal dominant condition, cause variable clinical features including neuropsychiatric and growth issues. This study identifies critical regions and genes influencing phenotypes like the cat-like cry in Cri-du-Chat syndrome.

Area of Science:

  • Genetics
  • Human Molecular Genetics
  • Clinical Genetics

Background:

  • 5p deletions are linked to Cri-du-Chat syndrome (CdCS), characterized by a cat-like cry, dysmorphic features, microcephaly, and intellectual disability.
  • Most 5p deletions are de novo, but familial cases involving translocations/inversions are known.

Purpose of the Study:

  • To report and characterize three multigenerational families with autosomal dominant terminal 5p deletions of varying sizes.
  • To identify genotype-phenotype correlations and refine critical regions for specific CdCS features.

Main Methods:

  • Clinical characterization of affected individuals across three families.
  • Molecular analysis using microarray and fluorescence in situ hybridization (FISH) to define deletion size and breakpoints.
  • Comparative analysis of deletion breakpoints and associated phenotypes.

Main Results:

  • Identified three families with autosomal dominant terminal 5p deletions, exhibiting variable clinical findings.
  • Confirmed shared features including neuropsychiatric issues, poor growth, and dysmorphic facial features.
  • Narrows the critical region for the cat-like cry to <1 Mb, implicating the ICE1 gene. Aberrant SEMA5A and CTNND2 dosage impacts autistic and cognitive phenotypes.

Conclusions:

  • Familial terminal 5p deletion is a rare condition with significant intra- and inter-familial phenotypic variability.
  • Deletion size, gene content, and potentially other genetic/environmental factors contribute to phenotypic heterogeneity.
  • Further high-resolution studies are needed to fully define genotype-phenotype correlations in 5p deletion syndromes.