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Published on: January 16, 2019
Primary Ciliary Dyskinesia and Retinitis Pigmentosa: Novel RPGR Variant and Possible Modifier Gene
Noelia Baz-Redón1,2, Laura Sánchez-Bellver2,3, Mónica Fernández-Cancio1,2
1Growth and Development Research Group, Vall d'Hebron Research Institute (VHIR), Hospital Universitari Vall d'Hebron, 08035 Barcelona, Spain.
Abstract:
We report a novel RPGR missense variant co-segregated with a familial X-linked retinitis pigmentosa (XLRP) case. The brothers were hemizygous for this variant, but only the proband presented with primary ciliary dyskinesia (PCD). Thus, we aimed to elucidate the role of the RPGR variant and other modifier genes in the phenotypic variability observed in the family and its impact on motile cilia. The pathogenicity of the variant on the RPGR protein was evaluated by in vitro studies transiently transfecting the mutated RPGR gene, and immunofluorescence analysis on nasal brushing samples. Whole-exome sequencing was conducted to identify potential modifier variants. In vitro studies showed that the mutated RPGR protein could not localise to the cilium and impaired cilium formation. Accordingly, RPGR was abnormally distributed in the siblings' nasal brushing samples. In addition, a missense variant in CEP290 was identified. The concurrent RPGR variant influenced ciliary mislocalisation of the protein. We provide a comprehensive characterisation of motile cilia in this XLRP family, with only the proband presenting PCD symptoms. The variant's pathogenicity was confirmed, although it alone does not explain the respiratory symptoms. Finally, the CEP290 gene may be a potential modifier for respiratory symptoms in patients with RPGR mutations.
Insights
A novel RPGR gene variant causes X-linked retinitis pigmentosa and affects cilia. CEP290 may modify respiratory symptoms in affected individuals, explaining varied disease presentation.
Area of Science:
- Genetics
- Ophthalmology
- Cell Biology
Background:
- X-linked retinitis pigmentosa (XLRP) is a genetic disorder affecting vision.
- Motile cilia are crucial for various bodily functions, including respiratory health.
- Understanding genetic factors influencing XLRP and ciliary function is essential.
Observation:
- A family with XLRP showed a novel RPGR gene variant.
- Only one sibling with the RPGR variant presented with primary ciliary dyskinesia (PCD).
- In vitro and in vivo studies revealed impaired RPGR protein localization and ciliary formation.
Findings:
- The identified RPGR variant is pathogenic, disrupting ciliary function.
- A CEP290 gene variant was also found, potentially influencing disease presentation.
- The RPGR variant alone did not fully explain the respiratory symptoms observed in the proband.
Implications:
- This study elucidates the role of RPGR in ciliary function and XLRP.
- CEP290 may act as a modifier gene for respiratory symptoms in RPGR-related disorders.
- Further research into modifier genes can improve understanding of XLRP phenotypic variability.
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