A Recurrent Missense Variant in AP2M1 Impairs Clathrin-Mediated Endocytosis and Causes Developmental and Epileptic Encephalopathy

AP2M1基因中一种复发性错义变异会损害网格蛋白介导的内吞作用,并导致发育性和癫痫性脑病。

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作者:Ingo Helbig ,Tania Lopez-Hernandez ,Oded Shor ,Peter Galer ,Shiva Ganesan ,Manuela Pendziwiat ,Annika Rademacher ,Colin A Ellis ,Nadja Hümpfer ,Niklas Schwarz ,Simone Seiffert ,Joseph Peeden ,Joseph Shen ,Katalin Štěrbová ,Trine Bjørg Hammer ,Rikke S Møller ,Deepali N Shinde ,Sha Tang ,Lacey Smith ,Annapurna Poduri ,Roland Krause ,Felix Benninger ,Katherine L Helbig ,Volker Haucke ,Yvonne G Weber

Abstract

The developmental and epileptic encephalopathies (DEEs) are heterogeneous disorders with a strong genetic contribution, but the underlying genetic etiology remains unknown in a significant proportion of individuals. To explore whether statistical support for genetic etiologies can be generated on the basis of phenotypic features, we analyzed whole-exome sequencing data and phenotypic similarities by using Human Phenotype Ontology (HPO) in 314 individuals with DEEs. We identified a de novo c.508C>T (p.Arg170Trp) variant in AP2M1 in two individuals with a phenotypic similarity that was higher than expected by chance (p = 0.003) and a phenotype related to epilepsy with myoclonic-atonic seizures. We subsequently found the same de novo variant in two individuals with neurodevelopmental disorders and generalized epilepsy in a cohort of 2,310 individuals who underwent diagnostic whole-exome sequencing. AP2M1 encodes the μ-subunit of the adaptor protein complex 2 (AP-2), which is involved in clathrin-mediated endocytosis (CME) and synaptic vesicle recycling. Modeling of protein dynamics indicated that the p.Arg170Trp variant impairs the conformational activation and thermodynamic entropy of the AP-2 complex. Functional complementation of both the μ-subunit carrying the p.Arg170Trp variant in human cells and astrocytes derived from AP-2μ conditional knockout mice revealed a significant impairment of CME of transferrin. In contrast, stability, expression levels, membrane recruitment, and localization were not impaired, suggesting a functional alteration of the AP-2 complex as the underlying disease mechanism. We establish a recurrent pathogenic variant in AP2M1 as a cause of DEEs with distinct phenotypic features, and we implicate dysfunction of the early steps of endocytosis as a disease mechanism in epilepsy. Keywords: Human Phenotype Ontology; clathrin-mediated endocytosis; computational phenotypes; developmental and epileptic encephalopathy; neurodevelopmental disorders; synaptic transmission.

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