Loss-of-function variants inCUL3cause a syndromic neurodevelopmental disorder
Author:
Blackburn Patrick R.ORCID, Ebstein Frédéric, Hsieh Tzung-Chien, Motta MarialetiziaORCID, Radio Francesca ClementinaORCID, Herkert Johanna C.ORCID, Rinne Tuula, Thiffault Isabelle, Rapp Michele, Alders Mariel, Maas Saskia, Gerard Bénédicte, Smol ThomasORCID, Vincent-Delorme Catherine, Cogné BenjaminORCID, Isidor Bertrand, Vincent Marie, Bachmann-Gagescu RuxandraORCID, Rauch Anita, Joset Pascal, Ferrero Giovanni BattistaORCID, Ciolfi AndreaORCID, Husson ThomasORCID, Guerrot Anne-Marie, Bacino CarlosORCID, Macmurdo Colleen, Thompson Stephanie S., Rosenfeld Jill A.ORCID, Faivre LaurenceORCID, Mau-Them Frederic TranORCID, Deb Wallid, Vignard Virginie, Agrawal Pankaj B., Madden Jill A.ORCID, Goldenberg Alice, Lecoquierre François, Zech Michael, Prokisch Holger, Necpál Ján, Jech Robert, Winkelmann Juliane, Koprušáková Monika Turčanová, Konstantopoulou Vassiliki, Younce John R.ORCID, Shinawi Marwan, Mighton Chloe, Fung Charlotte, Morel Chantal, Ellis Jordan Lerner-ORCID, DiTroia StephanieORCID, Barth Magalie, Bonneau Dominique, Krapels Ingrid, Stegmann Sander, Schoot Vyne van der, Brunet TheresaORCID, Bußmann Cornelia, Mignot Cyril, Courtin Thomas, Ravelli Claudia, Keren Boris, Ziegler Alban, Hasadsri Linda, Pichurin Pavel N., Klee Eric W., Grand Katheryn, Sanchez-Lara Pedro A., Krüger ElkeORCID, Bézieau Stéphane, Klinkhammer Hannah, Krawitz Peter Michael, Eichler Evan E.ORCID, Tartaglia MarcoORCID, Küry Sébastien, Wang TianyunORCID
Abstract
AbstractPurposeDe novovariants inCUL3(Cullin-3 ubiquitin ligase) 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 inCUL3,describe the genotype-phenotype correlation, and investigate the underlying pathogenic mechanism.MethodsGenetic data and detailed clinical records were collected via multi-center collaboration. Dysmorphic facial features were analyzed using GestaltMatcher. Variant effects on CUL3 protein stability were assessed using patient-derived T-cells.ResultsWe assembled a cohort of 35 individuals with heterozygousCUL3variants presenting a syndromic NDD characterized by intellectual disability with or without autistic features. Of these, 33 have loss-of-function (LoF) and two have missense variants.CUL3LoF variants in patients may affect protein stability leading to perturbations in protein homeostasis, as evidenced by decreased ubiquitin-protein conjugatesin vitro. Specifically, we show that cyclin E1 (CCNE1) and 4E-BP1 (EIF4EBP1), two prominent substrates of CUL3, fail to be targeted for proteasomal degradation in patient-derived cells.ConclusionOur study further refines the clinical and mutational spectrum ofCUL3-associated NDDs, expands the spectrum of cullin RING E3 ligase-associated neuropsychiatric disorders, and suggests haploinsufficiency via LoF variants is the predominant pathogenic mechanism.
Publisher
Cold Spring Harbor Laboratory
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