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.
Abstract:
Deletion of the short arm of chromosome 5 (5p-) is associated with phenotypic features including a cat-like cry in infancy, dysmorphic facial features, microcephaly, and intellectual disability, and when encompassing a minimal critical region, may be defined as Cri-du-Chat syndrome (CdCS). Most 5p deletions are de novo in origin, and familial cases are often associated with translocation and inversion. Herein, we report three multigenerational families carrying 5p terminal deletions of different size transmitted in an autosomal dominant manner causing variable clinical findings. Terminal 5p deletions and the mode of inheritance were clinically characterized and molecularly analyzed by a combination of microarray and fluorescence in situ hybridization analyses. Shared phenotypic features documented in this cohort included neuropsychiatric findings, poor growth, and dysmorphic facial features. This study supports newly recognized effects of aberrant SEMA5A and CTNND2 dosage on severity of autistic and cognitive phenotypes. Comparative analysis of the breakpoints narrows the critical region for the cat-like cry down to an interval less than 1 Mb encompassing a candidate gene ICE1, which regulates small nuclear RNA transcription. This study also indicates that familial terminal 5p deletion is a rare presentation displaying intra- and inter-familial phenotypic variability, the latter of which may be attributed to size and gene content of the deletion. The observed intra-familial phenotypic heterogeneity suggests that additional modifying elements including genetic and environmental factors may have an impact on the clinical manifestations observed in 5p deletion carriers, and in time, further high resolution studies of 5p deletion breakpoints will continue to aid in defining genotype-phenotype correlations.
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