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Co-occurrence of Joubert syndrome and Jeune asphyxiating thoracic dystrophy
A M Lehman1, P Eydoux, D Doherty
1Department of Medical Genetics, University of British Columbia, Vancouver, BC, Canada.
Insights
Joubert syndrome and Jeune asphyxiating thoracic dystrophy co-occurrence suggests a distinct ciliary disorder entity. Further research is needed to identify the underlying genetic cause of this rare condition.
Area of Science:
- Genetics
- Developmental Biology
- Medical Genetics
Background:
- Ciliary disorders often present with overlapping features like polydactyly and organ dysplasia.
- Joubert syndrome and Jeune asphyxiating thoracic dystrophy are distinct ciliopathies with shared characteristics.
Observation:
- This study details two siblings and two unrelated children with co-occurring Joubert syndrome and Jeune asphyxiating thoracic dystrophy.
- The co-occurrence highlights common malformation patterns seen in ciliopathies.
Findings:
- Genetic analysis, including homozygosity mapping and gene sequencing, did not identify mutations in known Joubert or Jeune syndrome genes in the affected individuals.
- The study excluded several candidate genes, including INVS, AHI1, RPGRIP1L, ARL13B, TMEM67, OFD1, CC2D2A, and NPHP1.
Implications:
- The co-occurrence of these two syndromes may represent a novel, distinct genetic entity requiring the discovery of new causative genes.
- Understanding the genetic basis of such overlapping ciliopathies is crucial for diagnosis and potential therapeutic strategies.
Abstract:
Ciliary disorders share typical features, such as polydactyly, renal and biliary cystic dysplasia, and retinitis pigmentosa, which often overlap across diagnostic entities. We report on two siblings of consanguineous parents and two unrelated children, both of unrelated parents, with co-occurrence of Joubert syndrome and Jeune asphyxiating thoracic dystrophy, an association that adds to the observation of common final patterns of malformations in ciliary disorders. Using homozygosity mapping in the siblings, we were able to exclude all known genes/loci for both syndromes except for INVS, AHI1, and three genes from the previously described Jeune locus at 15q13. No pathogenic variants were found in these genes by direct sequencing. In the third child reported, sequencing of RPGRIP1L, ARL13B, AHI1, TMEM67, OFD1, CC2D2A, and deletion analysis of NPHP1 showed no mutations. Although this study failed to identify a mutation in the patients tested, the co-occurrence of Joubert and Jeune syndromes is likely to represent a distinct entity caused by mutations in a yet to be discovered gene. The mechanisms by which certain organ systems are affected more than others in the spectrum of ciliary diseases remain largely unknown.
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