| Literature DB >> 30664714 |
Markus Zweier1, Anaïs Begemann1,2, Kirsty McWalter3, Megan T Cho3, Lucia Abela2,4, Siddharth Banka5,6, Bettina Behring7, Andrea Berger8, Chester W Brown9,10, Maryline Carneiro11, Jiani Chen12, Gregory M Cooper13, Candice R Finnila13, Maria J Guillen Sacoto3, Alex Henderson14, Ulrike Hüffmeier15, Pascal Joset1, Bronwyn Kerr5,6, Gaetan Lesca16,17, Gloria S Leszinski18, John Henry McDermott5, Meira R Meltzer19, Kristin G Monaghan3, Roya Mostafavi9, Katrin Õunap20,21, Barbara Plecko2,4,22, Zöe Powis23, Gabriela Purcarin12, Tiia Reimand20,21,24, Korbinian M Riedhammer18,25, John M Schreiber19, Deepa Sirsi26, Klaas J Wierenga12,27, Monica H Wojcik28, Sorina M Papuc1,29, Katharina Steindl1, Heinrich Sticht30, Anita Rauch31,32,33,34.
Abstract
CYFIP2, encoding the evolutionary highly conserved cytoplasmic FMRP interacting protein 2, has previously been proposed as a candidate gene for intellectual disability and autism because of its important role linking FMRP-dependent transcription regulation and actin polymerization via the WAVE regulatory complex (WRC). Recently, de novo variants affecting the amino acid p.Arg87 of CYFIP2 were reported in four individuals with epileptic encephalopathy. We here report 12 independent patients harboring a variety of de novo variants in CYFIP2 broadening the molecular and clinical spectrum of a novel CYFIP2-related neurodevelopmental disorder. Using trio whole-exome or -genome sequencing, we identified 12 independent patients carrying a total of eight distinct de novo variants in CYFIP2 with a shared phenotype of intellectual disability, seizures, and muscular hypotonia. We detected seven different missense variants, of which two occurred recurrently (p.(Arg87Cys) and p.(Ile664Met)), and a splice donor variant in the last intron for which we showed exon skipping in the transcript. The latter is expected to escape nonsense-mediated mRNA decay resulting in a truncated protein. Despite the large spacing in the primary structure, the variants spatially cluster in the tertiary structure and are all predicted to weaken the interaction with WAVE1 or NCKAP1 of the actin polymerization regulating WRC-complex. Preliminary genotype-phenotype correlation indicates a profound phenotype in p.Arg87 substitutions and a more variable phenotype in other alterations. This study evidenced a variety of de novo variants in CYFIP2 as a novel cause of mostly severe intellectual disability with seizures and muscular hypotonia.Entities:
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Year: 2019 PMID: 30664714 PMCID: PMC6461771 DOI: 10.1038/s41431-018-0331-z
Source DB: PubMed Journal: Eur J Hum Genet ISSN: 1018-4813 Impact factor: 4.246