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Loss-of-Function Variants in CUL3 Cause a Syndromic Neurodevelopmental Disorder.

Authors :
Blackburn PR
Ebstein F
Hsieh TC
Motta M
Radio FC
Herkert JC
Rinne T
Thiffault I
Rapp M
Alders M
Maas S
Gerard B
Smol T
Vincent-Delorme C
Cogné B
Isidor B
Vincent M
Bachmann-Gagescu R
Rauch A
Joset P
Ferrero GB
Ciolfi A
Husson T
Guerrot AM
Bacino C
Macmurdo C
Thompson SS
Rosenfeld JA
Faivre L
Mau-Them FT
Deb W
Vignard V
Agrawal PB
Madden JA
Goldenberg A
Lecoquierre F
Zech M
Prokisch H
Necpál J
Jech R
Winkelmann J
Koprušáková MT
Konstantopoulou V
Younce JR
Shinawi M
Mighton C
Fung C
Morel CF
Lerner-Ellis J
DiTroia S
Barth M
Bonneau D
Krapels I
Stegmann APA
van der Schoot V
Brunet T
Bußmann C
Mignot C
Zampino G
Wortmann SB
Mayr JA
Feichtinger RG
Courtin T
Ravelli C
Keren B
Ziegler A
Hasadsri L
Pichurin PN
Klee EW
Grand K
Sanchez-Lara PA
Krüger E
Bézieau S
Klinkhammer H
Krawitz PM
Eichler EE
Tartaglia M
Küry S
Wang T
Source :
Annals of neurology [Ann Neurol] 2024 Sep 20. Date of Electronic Publication: 2024 Sep 20.
Publication Year :
2024
Publisher :
Ahead of Print

Abstract

Objective: De novo variants in cullin-3 ubiquitin ligase (CUL3) have been strongly associated with neurodevelopmental disorders (NDDs), but no large case series have been reported so far. Here, we aimed to collect sporadic cases carrying rare variants in CUL3, describe the genotype-phenotype correlation, and investigate the underlying pathogenic mechanism.<br />Methods: Genetic data and detailed clinical records were collected via multicenter collaboration. Dysmorphic facial features were analyzed using GestaltMatcher. Variant effects on CUL3 protein stability were assessed using patient-derived T-cells.<br />Results: We assembled a cohort of 37 individuals with heterozygous CUL3 variants presenting a syndromic NDD characterized by intellectual disability with or without autistic features. Of these, 35 have loss-of-function (LoF) and 2 have missense variants. CUL3 LoF variants in patients may affect protein stability leading to perturbations in protein homeostasis, as evidenced by decreased ubiquitin-protein conjugates in vitro. Notably, we show that 4E-BP1 (EIF4EBP1), a prominent substrate of CUL3, fails to be targeted for proteasomal degradation in patient-derived cells.<br />Interpretation: Our study further refines the clinical and mutational spectrum of CUL3-associated NDDs, expands the spectrum of cullin RING E3 ligase-associated neuropsychiatric disorders, and suggests haploinsufficiency via LoF variants is the predominant pathogenic mechanism. ANN NEUROL 2024.<br /> (© 2024 American Neurological Association.)

Details

Language :
English
ISSN :
1531-8249
Database :
MEDLINE
Journal :
Annals of neurology
Publication Type :
Academic Journal
Accession number :
39301775
Full Text :
https://doi.org/10.1002/ana.27077