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Accès ouvert déclaré 2023 article

Bi-allelic genetic variants in the translational GTPases GTPBP1 and GTPBP2 cause a distinct identical neurodevelopmental syndrome

9Citations signalées, ce qui n’est pas une note de qualité
56Institutions déclarées
15Pays d’affiliation déclarés

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Le résumé fourni par la source

The homologous genes GTPBP1 and GTPBP2 encode GTP-binding proteins 1 and 2, which are involved in ribosomal homeostasis. Pathogenic variants in GTPBP2 were recently shown to be an ultra-rare cause of neurodegenerative or neurodevelopmental disorders (NDDs). Until now, no human phenotype has been linked to GTPBP1. Here, we describe individuals carrying bi-allelic GTPBP1 variants that display an identical phenotype with GTPBP2 and characterize the overall spectrum of GTP-binding protein (1/2)-related disorders. In this study, 20 individuals from 16 families with distinct NDDs and syndromic facial features were investigated by whole-exome (WES) or whole-genome (WGS) sequencing. To assess the functional impact of the identified genetic variants, semi-quantitative PCR, western blot, and ribosome profiling assays were performed in fibroblasts from affected individuals. We also investigated the effect of reducing expression of CG2017, an ortholog of human GTPBP1/2, in the fruit fly Drosophila melanogaster. Individuals with bi-allelic GTPBP1 or GTPBP2 variants presented with microcephaly, profound neurodevelopmental impairment, pathognomonic craniofacial features, and ectodermal defects. Abnormal vision and/or hearing, progressive spasticity, choreoathetoid movements, refractory epilepsy, and brain atrophy were part of the core phenotype of this syndrome. Cell line studies identified a loss-of-function (LoF) impact of the disease-associated variants but no significant abnormalities on ribosome profiling. Reduced expression of CG2017 isoforms was associated with locomotor impairment in Drosophila. In conclusion, bi-allelic GTPBP1 and GTPBP2 LoF variants cause an identical, distinct neurodevelopmental syndrome. Mutant CG2017 knockout flies display motor impairment, highlighting the conserved role for GTP-binding proteins in CNS development across species.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Bi-allelic genetic variants in the translational GTPases GTPBP1 and GTPBP2 cause a distinct identical neurodevelopmental syndrome
Date Crossref
01/01/2024
Éditeur
Elsevier BV
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

National Hospital for Neurology and NeurosurgeryUniversity College LondonNational Research CentreHoward Hughes Medical InstituteJohns Hopkins UniversityBambino Gesù Children's HospitalUniversity of MünsterKing Saud bin Abdulaziz University for Health SciencesKing Abdulaziz Medical CityKing Abdullah International Medical Research CenterNational Guard Health AffairsMcGill UniversityIstituto Giannina GasliniIstituti di Ricovero e Cura a Carattere ScientificoUniversity of GenoaMashhad University of Medical SciencesNational Institute for Biotechnology and Genetic EngineeringCentre for Human GeneticsNational Institute for Health and Care ResearchUniversity of OxfordHuman TechnopoleAlexandria UniversityNational and Kapodistrian University of AthensAristotle University of ThessalonikiPapageorgiou General HospitalGhaem HospitalNorth Khorasan University of Medical SciencesSt Mary's HospitalManchester University NHS Foundation TrustSt. Mary's HospitalMRC Prion UnitMohammed V UniversityMedical University of SofiaSofia University "St. Kliment Ohridski"Bangladesh Shishu (Children) Hospital & InstituteFondazione Istituto Neurologico Nazionale Casimiro MondinoChild Health Research FoundationUniversity of PaviaPoliclinico San Matteo FondazioneHebron UniversityVall d'Hebron Hospital UniversitariFondazione IRCCS Istituto Neurologico Carlo BestaUniversity of MilanAgostino Gemelli University PolyclinicKing Faisal Specialist Hospital & Research CentreSt George's, University of LondonCentogene (Germany)University of PisaFondazione Stella MarisUniversity of Chieti-PescaraKing Fahd Medical CityRoyal Hospital for ChildrenRoyal Hospital for Sick ChildrenGreat Ormond Street HospitalBoston Children's HospitalHarvard University

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

RNA and protein synthesis mechanismsRNA modifications and cancerRNA regulation and disease

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