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Gys1 Antisense Therapy Prevents Disease-Driving Aggregates and Epileptiform Discharges in a Lafora Disease Mouse Model.

Authors :
Donohue, Katherine J.
Fitzsimmons, Bethany
Bruntz, Ronald C.
Markussen, Kia H.
Young, Lyndsay E. A.
Clarke, Harrison A.
Coburn, Peyton T.
Griffith, Laiken E.
Sanders, William
Klier, Jack
Burke, Sara N.
Maurer, Andrew P.
Minassian, Berge A.
Sun, Ramon C.
Kordasiewisz, Holly B.
Gentry, Matthew S.
Source :
Neurotherapeutics; Oct2023, Vol. 20 Issue 6, p1808-1819, 12p
Publication Year :
2023

Abstract

Patients with Lafora disease have a mutation in EPM2A or EPM2B, resulting in dysregulation of glycogen metabolism throughout the body and aberrant glycogen molecules that aggregate into Lafora bodies. Lafora bodies are particularly damaging in the brain, where the aggregation drives seizures with increasing severity and frequency, coupled with neurodegeneration. Previous work employed mouse genetic models to reduce glycogen synthesis by approximately 50%, and this strategy significantly reduced Lafora body formation and disease phenotypes. Therefore, an antisense oligonucleotide (ASO) was developed to reduce glycogen synthesis in the brain by targeting glycogen synthase 1 (Gys1). To test the distribution and efficacy of this drug, the Gys1-ASO was administered to Epm2b-/- mice via intracerebroventricular administration at 4, 7, and 10 months. The mice were then sacrificed at 13 months and their brains analyzed for Gys1 expression, glycogen aggregation, and neuronal excitability. The mice treated with Gys1-ASO exhibited decreased Gys1 protein levels, decreased glycogen aggregation, and reduced epileptiform discharges compared to untreated Epm2b-/- mice. This work provides proof of concept that a Gys1-ASO halts disease progression of EPM2B mutations of Lafora disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19337213
Volume :
20
Issue :
6
Database :
Complementary Index
Journal :
Neurotherapeutics
Publication Type :
Academic Journal
Accession number :
173890943
Full Text :
https://doi.org/10.1007/s13311-023-01434-9