Variants in ATP6V0A1 cause progressive myoclonus epilepsy and developmental and epileptic encephalopathy
Author(s) -
Laura C. Bott,
Mitra Forouhan,
Maria Lieto,
Ambre J. Sala,
Ruth Ellerington,
Janel O. Johnson,
Alfina A. Speciale,
Chiara Criscuolo,
Alessandro Filla,
David Chitayat,
Ebba Alkhunaizi,
Patrick Shan,
Andrea H. Németh,
Domenica Taruscio,
Marco Salvatore,
Agata Polizzi,
Federica Censi,
Giovanna Floridia,
Giuseppe Novelli,
Erica Daina,
Alessandra Ferlini,
Marcella Neri,
Dario Roccatello,
Simone Baldovino,
Elisa Menegatti,
Francesco Angelucci,
Wooi Fang Lim,
Pasquale Striano,
Federico Zara,
Ingo Helbig,
Mikko Muona,
Carolina Courage,
AnnaElina Lehesjoki,
Samuel F. Berkovic,
Nancy Pinnell,
Dallas Reed,
Peter D. Turnpenny,
Jacqueline Eason,
Leah R. Fleming,
Kirsty McWalter,
Kali Juliette,
Paul J. Benke,
Xilma R. OrtizGonzález,
Sarah McKeown,
Amisha B Patel,
Matthew Osmond,
Jagdeep S. Walia,
Xianru Jiao,
Zhixian Yang,
Boris Keren,
Perrine Charles,
Ashish R. Deshwar,
Kenneth H. Fischbeck,
Francesco Brancati,
Richard I. Morimoto,
Matthew J. A. Wood,
Carlo Rinaldi
Publication year - 2021
Publication title -
brain communications
Language(s) - English
Resource type - Journals
ISSN - 2632-1297
DOI - 10.1093/braincomms/fcab245
Subject(s) - epilepsy , myoclonus , progressive myoclonus epilepsy , encephalopathy , neuroscience , psychology , medicine , pediatrics , psychiatry
The vacuolar H+-ATPase is a large multi-subunit proton pump, composed of an integral membrane V0 domain, involved in proton translocation, and a peripheral V1 domain, catalysing ATP hydrolysis. This complex is widely distributed on the membrane of various subcellular organelles, such as endosomes and lysosomes, and plays a critical role in cellular processes ranging from autophagy to protein trafficking and endocytosis. Variants in ATP6V0A1, the brain-enriched isoform in the V0 domain, have been recently associated with developmental delay and epilepsy in four individuals. Here, we identified 17 individuals from 14 unrelated families with both with new and previously characterized variants in this gene, representing the largest cohort to date. Five affected subjects with biallelic variants in this gene presented with a phenotype of early-onset progressive myoclonus epilepsy with ataxia, while 12 individuals carried de novo missense variants and showed severe developmental and epileptic encephalopathy. The R740Q mutation, which alone accounts for almost 50% of the mutations identified among our cases, leads to failure of lysosomal hydrolysis by directly impairing acidification of the endolysosomal compartment, causing autophagic dysfunction and severe developmental defect in Caenorhabditis elegans. Altogether, our findings further expand the neurological phenotype associated with variants in this gene and provide a direct link with endolysosomal acidification in the pathophysiology of ATP6V0A1-related conditions.
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