Accès ouvert déclaré2025article
Mutations in the Key Autophagy Tethering Factor EPG5 Link Neurodevelopmental and Neurodegenerative Disorders Including Early‐Onset Parkinsonism
Hormos Salimi Dafsari, Celine Deneubourg, Kritarth Singh, Reza Maroofian, Zita Suprenant, Ay Lin Kho, Neil J. Ingham, Karen P. Steel, Preethi Sheshadri, Franciska Baur, Lea Hentrich, Birgit Gerisch, Mina Zamani, Cesar Alves, Ata Siddiqui, Haidar S. Dafsari, Mehri Salari, Anthony E. Lang, Michael A. Harris, Alice Abdel Aleem, Saeid Sadeghian, Reza Azizimalamiri, Hamid Galehdari, Gholamreza Shariati, Alireza Sedaghat, Jawaher Zeighami, Daniel G. Calame, Dana Marafi, Ruizhi Duan, Adrian Boehnke, Gary Clark, Jill A. Rosenfeld, Carrie Mohila, Dora Steel, Saurabh Chopra, Suvasini Sharma, Nicolai Kohlschmidt, Steffi Patzer, Afshin Saffari, Darius Ebrahimi‐Fakhari, Büşra Eser Çavdartepe, Irene J. Chang, Erika Beckman, Renate Peters, Andrew Fennell, Bernice Lo, Luisa Averdunk, Martina Baethmann, Frances Elmslie, Kairit Joost, Sheela Nampoothiri, Dhanya Yesodharan, Hanna Mandel, Amy Kimball, Antonie D. Kline, Cyril Mignot, Boris Keren, Vincent Laugel, Katrin Õunap, Kalpana Devadathan, Frédérique M.C. van Berkestijn, Arpana Silwal, Saskia Koene, Sumit Verma, Mohammed Yousuf Karim, Chahynez Boubidi, Majid Aziz, Gehad ElGhazali, Lauren Mattas, Mohammad Miryounesi, Feyzollah Hashemi‐Gorji, Shahryar Alavi, Nayereh Nouri, Mehrdad Noruzinia, Saeideh Kavousi, Arveen Kamath, Sandeep Jayawant, Russell P. Saneto, Nourelhoda A. Haridy, Pınar Özkan Kart, Ali Cansu, Madeleine Joubert, Claire Bénéteau, Kyra E. Stuurman, Martina Wilke, Tahsin Stefan Barakat, Homa Tajsharghi, Annarita Scardamaglia, Sadeq Vallian, Ali Shoeibi, Reza Boostani, Narges Hashemi, Meisam Babaei, Norah Alsaleh, Julie A. Porter, Tania Attié‐Bitach, Pauline Marzin, Dorota Wicher, Jessica I. Gold, Elisabeth Schuler, Amna Kashgari, Rakan F. Alanazi, Wafaa Eyaid, Marc Engelen, Mirjam Langeveld, Burkhard Stüve, Yun Li, Gökhan Yigit, Bernd Wollnik, Mariana H.G. Monje, Dimitri Krainc, Niccolò E. Mencacci, Somayeh Bakhtiari, Michael C. Kruer, Emanuela Argilli, Elliott H. Sherr, Yalda Jamshidi, Ehsan Ghayoor Karimiani, Yiu Wing Sunny Cheung, Ivan Karin, Giovanni Zifarelli, Peter Bauer, Wendy K. Chung, James R. Lupski, Manju A. Kurian, Jörg Dötsch, Jürgen‐Christoph von Kleist-Retzow, Thomas Klopstock, Matias Wagner, Calvin K. Yip, Andreas Roos, Rita Carsetti, Carlo Dionisi‐Vici, Mathias Gautel, Michael R. Duchen, Adam Antebi, Henry Houlden, Manolis Fanto, Heinz Jungbluth
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Résumé fourni par la source
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.
Sujets associés
Autophagy in Disease and TherapyMitochondrial Function and PathologyHereditary Neurological Disorders