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Hypomorphic Recessive Variants in SUFU Impair the Sonic Hedgehog Pathway and Cause Joubert Syndrome with Cranio-facial and Skeletal Defects.

Authors :
De Mori R
Romani M
D'Arrigo S
Zaki MS
Lorefice E
Tardivo S
Biagini T
Stanley V
Musaev D
Fluss J
Micalizzi A
Nuovo S
Illi B
Chiapparini L
Di Marcotullio L
Issa MY
Anello D
Casella A
Ginevrino M
Leggins AS
Roosing S
Alfonsi R
Rosati J
Schot R
Mancini GMS
Bertini E
Dobyns WB
Mazza T
Gleeson JG
Valente EM
Source :
American journal of human genetics [Am J Hum Genet] 2017 Oct 05; Vol. 101 (4), pp. 552-563. Date of Electronic Publication: 2017 Sep 28.
Publication Year :
2017

Abstract

The Sonic Hedgehog (SHH) pathway is a key signaling pathway orchestrating embryonic development, mainly of the CNS and limbs. In vertebrates, SHH signaling is mediated by the primary cilium, and genetic defects affecting either SHH pathway members or ciliary proteins cause a spectrum of developmental disorders. SUFU is the main negative regulator of the SHH pathway and is essential during development. Indeed, Sufu knock-out is lethal in mice, and recessive pathogenic variants of this gene have never been reported in humans. Through whole-exome sequencing in subjects with Joubert syndrome, we identified four children from two unrelated families carrying homozygous missense variants in SUFU. The children presented congenital ataxia and cerebellar vermis hypoplasia with elongated superior cerebellar peduncles (mild "molar tooth sign"), typical cranio-facial dysmorphisms (hypertelorism, depressed nasal bridge, frontal bossing), and postaxial polydactyly. Two siblings also showed polymicrogyria. Molecular dynamics simulation predicted random movements of the mutated residues, with loss of the native enveloping movement of the binding site around its ligand GLI3. Functional studies on cellular models and fibroblasts showed that both variants significantly reduced SUFU stability and its capacity to bind GLI3 and promote its cleavage into the repressor form GLI3R. In turn, this impaired SUFU-mediated repression of the SHH pathway, as shown by altered expression levels of several target genes. We demonstrate that germline hypomorphic variants of SUFU cause deregulation of SHH signaling, resulting in recessive developmental defects of the CNS and limbs which share features with both SHH-related disorders and ciliopathies.<br /> (Copyright © 2017 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1537-6605
Volume :
101
Issue :
4
Database :
MEDLINE
Journal :
American journal of human genetics
Publication Type :
Academic Journal
Accession number :
28965847
Full Text :
https://doi.org/10.1016/j.ajhg.2017.08.017