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Loss of CBY1 results in a ciliopathy characterized by features of Joubert syndrome

Authors :
Dan Doherty
Nadine Bachmann
Rachel H. Giles
Erica E. Davis
Asbjørn Holmgren
Dulika S. Sumathipala
Barbara Käsmann-Kellner
Lokuliyange D S Senaratne
Suzanne Crowley
Sebastian Patzke
Nicholas Katsanis
Petter Strømme
Daniel Epting
Christian Decker
Kari-Anne M Frikstad
Carsten Bergmann
Manuela Zucknick
Diana Bracht
Tuva Barøy
Elisabeth Ott
Eva Decker
Soeren S. Lienkamp
Doriana Misceo
Ian G. Phelps
Heymut Omran
Miriam Schmidts
Alma Sikiric
Selma Mujezinovic Larsen
Julia Wallmeier
Eirik Frengen
Source :
Human Mutation
Publication Year :
2020
Publisher :
Hindawi Limited, 2020.

Abstract

Ciliopathies are clinically and genetically heterogeneous diseases. We studied three patients from two independent families presenting with features of Joubert syndrome: abnormal breathing pattern during infancy, developmental delay/intellectual disability, cerebellar ataxia, molar tooth sign on magnetic resonance imaging scans, and polydactyly. We identified biallelic loss‐of‐function (LOF) variants in CBY1, segregating with the clinical features of Joubert syndrome in the families. CBY1 localizes to the distal end of the mother centriole, contributing to the formation and function of cilia. In accordance with the clinical and mutational findings in the affected individuals, we demonstrated that depletion of Cby1 in zebrafish causes ciliopathy‐related phenotypes. Levels of CBY1 transcript were found reduced in the patients compared with controls, suggesting degradation of the mutated transcript through nonsense‐mediated messenger RNA decay. Accordingly, we could detect CBY1 protein in fibroblasts from controls, but not from patients by immunofluorescence. Furthermore, we observed reduced ability to ciliate, increased ciliary length, and reduced levels of the ciliary proteins AHI1 and ARL13B in patient fibroblasts. Our data show that CBY1 LOF‐variants cause a ciliopathy with features of Joubert syndrome.

Details

ISSN :
10981004 and 10597794
Volume :
41
Database :
OpenAIRE
Journal :
Human Mutation
Accession number :
edsair.doi.dedup.....ff060a6ff69fa03ce10682a61d2879e7
Full Text :
https://doi.org/10.1002/humu.24127