Germline variants in tumor suppressor FBXW7 lead to impaired ubiquitination and a neurodevelopmental syndrome

Archive ouverte

Stephenson, Sarah E.M. | Costain, Gregory | Blok, Laura E.R. | Silk, Michael | Nguyen, Thanh Binh | Dong, Xiaomin | Alhuzaimi, Dana | Dowling, James | Walker, Susan | Amburgey, Kimberly | Hayeems, Robin | Rodan, Lance | Schwartz, Marc | Picker, Jonathan | Lynch, Sally | Gupta, Aditi | Rasmussen, Kristen | Schimmenti, Lisa | Klee, Eric | Niu, Zhiyv | Agre, Katherine | Chilton, Ilana | Chung, Wendy | Revah-Politi, Anya | Au, P.Y. Billie | Griffith, Christopher | Racobaldo, Melissa | Raas-Rothschild, Annick | Ben Zeev, Bruria | Barel, Ortal | Moutton, Sebastien | Morice-Picard, Fanny | Carmignac, Virginie | Cornaton, Jenny | Marle, Nathalie | Devinsky, Orrin | Stimach, Chandler | Wechsler, Stephanie Burns | Hainline, Bryan | Sapp, Katie | Willems, Marjolaine | Bruel, Ange-Line | Dias, Kerith-Rae | Evans, Carey-Anne | Roscioli, Tony | Sachdev, Rani | Temple, Suzanna E.L. | Zhu, Ying | Baker, Joshua | Scheffer, Ingrid | Gardiner, Fiona | Schneider, Amy | Muir, Alison | Mefford, Heather | Crunk, Amy | Heise, Elizabeth | Millan, Francisca | Monaghan, Kristin | Person, Richard | Rhodes, Lindsay | Richards, Sarah | Wentzensen, Ingrid | Cogné, Benjamin | Isidor, Bertrand | Nizon, Mathilde | Vincent, Marie | Besnard, Thomas | Piton, Amelie | Marcelis, Carlo | Kato, Kohji | Koyama, Norihisa | Ogi, Tomoo | Goh, Elaine Suk-Ying | Richmond, Christopher | Amor, David | Boyce, Jessica | Morgan, Angela | Hildebrand, Michael | Kaspi, Antony | Bahlo, Melanie | Friðriksdóttir, Rún | Katrínardóttir, Hildigunnur | Sulem, Patrick | Stefánsson, Kári | Björnsson, Hans Tómas | Mandelstam, Simone | Morleo, Manuela | Mariani, Milena | Scala, Marcello | Accogli, Andrea | Torella, Annalaura | Capra, Valeria | Wallis, Mathew | Jansen, Sandra | Waisfisz, Quinten | de Haan, Hugoline | Sadedin, Simon | Lim, Sze Chern | White, Susan | Ascher, David | Schenck, Annette | Lockhart, Paul | Christodoulou, John | Tan, Tiong Yang

Edité par CCSD ; Elsevier (Cell Press) -

International audience. Neurodevelopmental disorders are highly heterogenous conditions resulting from abnormalities of brain architecture and/or function. FBXW7 (F-box and WD-repeat-domain-containing 7), a recognized developmental regulator and tumor suppressor, has been shown to regulate cell-cycle progression and cell growth and survival by targeting substrates including CYCLIN E1/2 and NOTCH for degradation via the ubiquitin proteasome system. We used a genotype-first approach and global data-sharing platforms to identify 35 individuals harboring de novo and inherited FBXW7 germline monoallelic chromosomal deletions and nonsense, frameshift, splice-site, and missense variants associated with a neurodevelopmental syndrome. The FBXW7 neurodevelopmental syndrome is distinguished by global developmental delay, borderline to severe intellectual disability, hypotonia, and gastrointestinal issues. Brain imaging detailed variable underlying structural abnormalities affecting the cerebellum, corpus collosum, and white matter. A crystal-structure model of FBXW7 predicted that missense variants were clustered at the substrate-binding surface of the WD40 domain and that these might reduce FBXW7 substrate binding affinity. Expression of recombinant FBXW7 missense variants in cultured cells demonstrated impaired CYCLIN E1 and CYCLIN E2 turnover. Pan-neuronal knockdown of the Drosophila ortholog, archipelago, impaired learning and neuronal function. Collectively, the data presented herein provide compelling evidence of an F-Box protein-related, phenotypically variable neurodevelopmental disorder associated with monoallelic variants in FBXW7.

Suggestions

Du même auteur

Spliceosome malfunction causes neurodevelopmental disorders with overlapping features

Archive ouverte | Li, Dong | CCSD

International audience. Pre-mRNA splicing is a highly coordinated process. While its dysregulation has been linked to neurological deficits, ourunderstanding of the underlying molecular and cellular mechanisms remai...

Rare pathogenic variants in WNK3 cause X-linked intellectual disability

Archive ouverte | Küry, Sébastien | CCSD

International audience. Purpose: WNK3 kinase (PRKWNK3) has been implicated in the development and function of the brain via its regulation of the cation-chloride cotransporters, but the role of WNK3 in human develop...

Missense Variants in the Histone Acetyltransferase Complex Component Gene TRRAP Cause Autism and Syndromic Intellectual Disability

Archive ouverte | Cogné, Benjamin | CCSD

International audience. Acetylation of the lysine residues in histones and other DNA-binding proteins plays a major role in regulation of eukaryotic gene expression. This process is controlled by histone acetyltrans...

Chargement des enrichissements...