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Published on: August 15, 2019
Interfamilial clinical variability in four Polish families with cranioectodermal dysplasia and identical compound
Joanna Walczak-Sztulpa1, Anna Wawrocka1, Małgorzata Stańczyk2
1Department of Medical Genetics, Poznan University of Medical Sciences, Poznan, Poland.
Insights
Cranioectodermal dysplasia (CED) is a rare genetic disorder. This study identifies identical WDR35 gene variants in Polish families, revealing significant clinical variability despite the shared genotype.
Area of Science:
- Genetics
- Molecular Biology
- Medical Genetics
Background:
- Cranioectodermal dysplasia (CED) is a rare autosomal recessive disorder.
- CED is a chondrodysplasia linked to ciliary dysfunction.
- Pathogenic variants in ciliary transport genes cause CED.
Observation:
- Five CED patients from four Polish families shared identical compound heterozygous variants in the WDR35 gene.
- These variants, c.1922T>G p.(Leu641Ter) and c.2522A>T; p.(Asp841Val), may represent founder mutations in the Polish population.
- Significant interfamilial clinical variability was observed among patients with the same WDR35 variants.
Findings:
- Identical compound heterozygous WDR35 variants lead to diverse clinical presentations in CED patients.
- Variability includes skeletal and ectodermal features, as well as renal and liver insufficiency.
- This is the first report demonstrating significant interfamilial clinical variability in CED patients with identical WDR35 compound heterozygous variants.
Implications:
- The WDR35 gene is crucial for ciliary function and CED pathogenesis.
- Genetic and non-genetic factors likely modulate CED phenotype expression and progression.
- Understanding these modulators is key for predicting disease course and developing targeted therapies.
Abstract:
Cranioectodermal dysplasia (CED) is a rare autosomal recessive disorder primarily characterized by craniofacial, skeletal, and ectodermal abnormalities. CED is a chondrodysplasia, which is part of a spectrum of clinically and genetically heterogeneous diseases that result from disruptions in cilia. Pathogenic variants in genes encoding components of the ciliary transport machinery are known to cause CED. Intra- and interfamilial clinical variability has been reported in a few CED studies and the findings of this study align with these observations. Here, we report on five CED patients from four Polish families with identical compound heterozygous variants [c.1922T>G p.(Leu641Ter) and c.2522A>T; p.(Asp841Val)] in WDR35. The frequent occurrence of both identified changes in Polish CED families suggests that these variants may be founder mutations. Clinical evaluation of the CED patients revealed interfamilial clinical variability among the patients. This includes differences in skeletal and ectodermal features as well as variability in development, progression, and severity of renal and liver insufficiency. This is the first report showing significant interfamilial clinical variability in a series of CED patients from unrelated families with identical compound heterozygous variants in WDR35. Our findings strongly indicate that other genetic and non-genetic factors may modulate the progression and expression of the patients' phenotypes.
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