PubMed · 42685196
Defective EV-mediated transport of SHH alters neural fate specification in EPM1 epilepsy.
Abstract
The extracellular milieu, including extracellular vesicles (EVs), plays a pivotal role in brain development. In this study, we sought to elucidate the pathogenesis of progressive myoclonus epilepsy type 1 (EPM1), a disease caused by mutations in the CSTB gene, using cerebral organoids (COs) derived from patient cells. The results demonstrate that EPM1 COs display increased electrophysiological activity and disrupted excitatory/inhibitory (E/I) balance. Single-cell RNA sequencing analysis of ventral EPM1-COs revealed an abnormal specification of progenitor fate, with a shift toward dorsal neuron identities. We demonstrated that this misspecification is driven by a functional alteration of the ventral signaling niche, resulting from impaired EV dynamics and altered protein cargo. Mechanistically, we identified Sonic Hedgehog (SHH) as a direct physical interactor of CSTB and demonstrated that CSTB deficiency leads to reduced SHH content and secretion. Our findings establish CSTB as a safeguard of ventral patterning and identify the CSTB-SHH-EV axis as a potential therapeutic target for mitigating the E/I imbalance associated with EPM1.
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Andrea Forero, Veronica Pravata, Fabrizia Pipicelli, Elisa Frenna, Alessandro Soloperto, Marta Ianni, Natalia Abate, Francesco Di Matteo, Zagorka Bekjarova, Laura Canafoglia, Francesca Ragona, Giuseppina Maccarrone, Mariano Gonzalez Pisfil, Christian Wahl-Schott, Filippo M Cernilogar, Matthias Eder, Rossella Di Giaimo, Silvia Cappello. 2026-09-02. Defective EV-mediated transport of SHH alters neural fate specification in EPM1 epilepsy.. https://doi.org/10.1126/sciadv.adu3955
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