Pathogenic SCN2A variants cause early-stage dysfunction in patient-derived neurons

Author:

Asadollahi R12,Delvendahl I34,Muff R1,Tan G5,Rodríguez D G5,Turan S6,Russo M1,Oneda B1,Joset P1,Boonsawat P1,Masood R1,Mocera M1,Ivanovski I1,Baumer A1,Bachmann-Gagescu R1,Schlapbach R5,Rehrauer H5,Steindl K1,Begemann A1,Reis A7,Winkler J89,Winner B69,Müller M341011,Rauch A141011121314

Affiliation:

1. Institute of Medical Genetics, University of Zurich , Schlieren-Zurich 8952 , Switzerland

2. Faculty of Engineering and Science, University of Greenwich London, Medway Campus , Chatham Maritime ME4 4TB , UK

3. Department of Molecular Life Sciences, University of Zurich , Zurich 8057 , Switzerland

4. Neuroscience Center Zurich, University of Zurich , Zurich 8057 , Switzerland

5. Functional Genomics Center Zurich, ETH Zurich and University of Zurich , Zurich 8057 , Switzerland

6. Department of Stem Cell Biology, Friedrich-Alexander-Universität Erlangen-Nürnberg , Erlangen 91054 , Germany

7. Institute of Human Genetics , Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen 91054 , Germany

8. Department of Molecular Neurology, Friedrich-Alexander-Universität Erlangen-Nürnberg , Erlangen 91054 , Germany

9. Center for Rare Diseases Erlangen, University Hospital Erlangen , Erlangen 91054 , Germany

10. University of Zurich Clinical Research Priority Program (CRPP) Praeclare – Personalized prenatal and reproductive medicine , Zurich 8006 , Switzerland

11. University of Zurich Research Priority Program (URPP) AdaBD: Adaptive Brain Circuits in Development and Learning , Zurich 8006 , Switzerland

12. University of Zurich Research Priority Program (URPP) ITINERARE: Innovative Therapies in Rare Diseases , Zurich 8006 , Switzerland

13. Zurich Center for Integrative Human Physiology, University of Zurich , Zurich 8057 , Switzerland

14. University Children's Hospital Zurich, University of Zurich , Zurich 8032 , Switzerland

Abstract

Abstract Pathogenic heterozygous variants in SCN2A, which encodes the neuronal sodium channel NaV1.2, cause different types of epilepsy or intellectual disability (ID)/autism without seizures. Previous studies using mouse models or heterologous systems suggest that NaV1.2 channel gain-of-function typically causes epilepsy, whereas loss-of-function leads to ID/autism. How altered channel biophysics translate into patient neurons remains unknown. Here, we investigated iPSC-derived early-stage cortical neurons from ID patients harboring diverse pathogenic SCN2A variants [p.(Leu611Valfs*35); p.(Arg937Cys); p.(Trp1716*)] and compared them with neurons from an epileptic encephalopathy (EE) patient [p.(Glu1803Gly)] and controls. ID neurons consistently expressed lower NaV1.2 protein levels. In neurons with the frameshift variant, NaV1.2 mRNA and protein levels were reduced by ~ 50%, suggesting nonsense-mediated decay and haploinsufficiency. In other ID neurons, only protein levels were reduced implying NaV1.2 instability. Electrophysiological analysis revealed decreased sodium current density and impaired action potential (AP) firing in ID neurons, consistent with reduced NaV1.2 levels. In contrast, epilepsy neurons displayed no change in NaV1.2 levels or sodium current density, but impaired sodium channel inactivation. Single-cell transcriptomics identified dysregulation of distinct molecular pathways including inhibition of oxidative phosphorylation in neurons with SCN2A haploinsufficiency and activation of calcium signaling and neurotransmission in epilepsy neurons. Together, our patient iPSC-derived neurons reveal characteristic sodium channel dysfunction consistent with biophysical changes previously observed in heterologous systems. Additionally, our model links the channel dysfunction in ID to reduced NaV1.2 levels and uncovers impaired AP firing in early-stage neurons. The altered molecular pathways may reflect a homeostatic response to NaV1.2 dysfunction and can guide further investigations.

Funder

Swiss National Science Foundation

University of Zurich Clinical Research Priority Program

University Research Priority Program of the University of Zurich

European Research Council Starting

Bavarian Ministry of Education and Culture, Science

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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