Heterozygous truncating variants in SUFU cause congenital ocular motor apraxia

2020 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Heterozygous truncating variants in SUFU cause congenital ocular motor apraxia​
Schröder, S.; Li, Y. ; Yigit, G. ; Altmüller, J.; Bader, I.; Bevot, A. & Biskup, S. et al.​ (2020) 
Genetics in Medicine23(2) pp. 341​-351​.​ DOI: https://doi.org/10.1038/s41436-020-00979-w 

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Authors
Schröder, Simone; Li, Yun ; Yigit, Gökhan ; Altmüller, Janine; Bader, Ingrid; Bevot, Andrea; Biskup, Saskia; Dreha-Kulaczewski, Steffi ; Christoph Korenke, G.; Kottke, Raimund; Mayr, Johannes A.; Preisel, Martin; Toelle, Sandra P.; Wente-Schulz, Sarah; Wortmann, Saskia B.; Hahn, Heidi ; Boltshauser, Eugen; Uhmann, Anja; Wollnik, Bernd ; Brockmann, Knut 
Abstract
Purpose This study aimed to delineate the genetic basis of congenital ocular motor apraxia (COMA) in patients not otherwise classifiable. Methods We compiled clinical and neuroimaging data of individuals from six unrelated families with distinct clinical features of COMA who do not share common diagnostic characteristics of Joubert syndrome or other known genetic conditions associated with COMA. We used exome sequencing to identify pathogenic variants and functional studies in patient-derived fibroblasts. Results In 15 individuals, we detected familial as well as de novo heterozygous truncating causative variants in the Suppressor of Fused (SUFU) gene, a negative regulator of the Hedgehog (HH) signaling pathway. Functional studies showed no differences in cilia occurrence, morphology, or localization of ciliary proteins, such as smoothened. However, analysis of expression of HH signaling target genes detected a significant increase in the general signaling activity in COMA patient–derived fibroblasts compared with control cells. We observed higher basal HH signaling activity resulting in increased basal expression levels of GLI1, GLI2, GLI3, and Patched1. Neuroimaging revealed subtle cerebellar changes, but no full-blown molar tooth sign. Conclusion Taken together, our data imply that the clinical phenotype associated with heterozygous truncating germline variants in SUFU is a forme fruste of Joubert syndrome.
Issue Date
2020
Journal
Genetics in Medicine 
Project
EXC 2067: Multiscale Bioimaging 
Working Group
RG Wollnik 
ISSN
1098-3600
eISSN
1530-0366
Language
English

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