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Mutations in the Key Autophagy Tethering Factor EPG5 Link Neurodevelopmental and Neurodegenerative Disorders Including Early‐Onset Parkinsonism

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118Institutions associées
22Pays d’affiliation

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OBJECTIVE: Autophagy is a fundamental biological pathway with vital roles in intracellular homeostasis. During autophagy, defective cargoes including mitochondria are targeted to lysosomes for clearance and recycling. Recessive truncating variants in the autophagy gene EPG5 have been associated with Vici syndrome, a severe early-onset neurodevelopmental disorder with extensive multisystem involvement. Here, we aimed to delineate the extended, age-dependent EPG5-related disease spectrum. METHODS: We investigated clinical, radiological, and molecular features from the largest cohort of EPG5-related patients identified to date, complemented by experimental investigation of cellular and animal models of EPG5 defects. RESULTS: Through worldwide collaboration, we identified 211 patients, 97 of them previously unpublished, with recessive EPG5 variants. The phenotypic spectrum ranged from antenatally lethal presentations to milder isolated neurodevelopmental disorders. A novel Epg5 knock-in mouse model of a recurrent EPG5 missense variant featured motor impairments and defective autophagy in brain areas particularly relevant for the neurological disorders in milder presentations. Novel age-dependent neurodegenerative manifestations in our cohort included adolescent-onset parkinsonism and dystonia with cognitive decline, and myoclonus. Radiological features suggested an emerging continuum with brain iron accumulation disorders. Patient fibroblasts showed defects in PINK1-Parkin-dependent mitophagic clearance and α-synuclein overexpression, indicating a cellular basis for the observed neurodegenerative phenotypes. In Caenorhabditis elegans, EPG5 knockdown caused motor impairments, defective mitophagic clearance, and changes in mitochondrial respiration comparable to observations in C. elegans knockdown of parkinsonism-related genes. INTERPRETATION: Our findings illustrate a lifetime neurological disease continuum associated with pathogenic EPG5 variants, linking neurodevelopmental and neurodegenerative disorders through the common denominator of defective autophagy. ANN NEUROL 2025;98:932-950.

Institutions

University of CologneKing's College LondonGuy's and St Thomas' NHS Foundation TrustUniversity Hospital CologneMax Planck Institute for Biology of AgeingUniversity College LondonMRC Mitochondrial Biology UnitNational Hospital for Neurology and NeurosurgeryRome FoundationAhvaz Jundishapur University of Medical SciencesShahid Chamran University of AhvazBoston Children's HospitalBoston Children's MuseumShahid Beheshti University of Medical SciencesUniversity Health NetworkOntario Brain InstituteNational Human Genome Research InstituteNational Research CentreWeill Cornell Medical College in QatarUniversity of MinnesotaBaylor College of MedicineBaylor GeneticsTexas Children's HospitalInstitute of Child HealthIndraprastha Apollo HospitalsLady Hardinge Medical CollegeKalawati Saran Children's HospitalLaboratoire National de SantéInstitute of GeneticsKrankenhaus St. Elisabeth und St. BarbaraHeidelberg UniversityUniversity Hospital HeidelbergKonya Eğitim ve Araştırma HastanesiUniversity of California San Francisco Medical CenterUniversity of WashingtonMarienhospital OsnabrückMonash HealthMonash UniversitySidra Medical and Research CenterHamad bin Khalifa UniversityHeinrich Heine University DüsseldorfMünchen KlinikSt George’s University Hospitals NHS Foundation TrustUniversity of TartuAmrita Institute of Medical Sciences and Research CentreRebecca Sieff HospitalGreater Baltimore Medical CenterSorbonne UniversitéAssistance Publique – Hôpitaux de ParisTsehootsooi Medical CenterHôpital d'HautepierreTartu University HospitalGovernment Medical CollegeGovernment Medical College and HospitalGovernment Medical CollegeUtrecht UniversityUniversity Medical Center UtrechtBarts Health NHS TrustLeiden University Medical CenterEmory UniversityChildren's Healthcare of AtlantaQatar Airways (Qatar)Qatar UniversityUniversity of Algiers Benyoucef BenkheddaUniversity of Algiers 3Shaikh Khalifa Medical CityUnited Arab Emirates UniversityLucile Packard Children's HospitalIsfahan Fertility and Infertility CenterUniversity of IsfahanTarbiat Modares UniversityCardiff and Vale University Health BoardOxford University Hospitals NHS TrustSeattle Children's HospitalSeattle Children's HospitalAssiut UniversityKaradeniz Technical UniversityCentre Hospitalier Universitaire de NantesNantes UniversitéErasmus MCUniversity of SkövdeIsfahan University of TechnologyDokuz Eylül UniversityMashhad University of Medical SciencesNorth Khorasan University of Medical SciencesKing Abdullah International Medical Research CenterNational Guard Health AffairsUniversity of UtahHôpital Necker-Enfants MaladesHôpital des EnfantsChildren's Memorial Health InstituteCohen Children's Medical CenterKing Abdulaziz Medical CityAmsterdam NeuroscienceUniversity of AmsterdamUniversity of SiegenUniversitätsmedizin GöttingenGerman Centre for Cardiovascular ResearchUniversity of GöttingenNorthwestern UniversityBarrow Neurological InstitutePhoenix Children's HospitalSan Francisco General HospitalUniversity of California, San FranciscoSt George's, University of LondonUniversity of British ColumbiaFriedrich Baur StiftungLudwig-Maximilians-Universität MünchenCentogene (Germany)Harvard UniversityGerman Center for Neurodegenerative DiseasesMunich Cluster for Systems NeurologyInstitute of Human GeneticsTechnical University of MunichChildren's Hospital of Eastern OntarioDüsseldorf University HospitalBambino Gesù Children's HospitalIstituti di Ricovero e Cura a Carattere Scientifico

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Autophagy in Disease and TherapyMitochondrial Function and PathologyHereditary Neurological Disorders

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