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Mechanism suppressing glycogen synthesis in neurons and its demise in progressive myoclonus epilepsy

Authors :
Vilchez, David
Ros, Susana
Cifuentes, Daniel
Pujadas, Lluís
Vallès, Jordi
García-Fojeda García-Valdecasas, María Belén
Criado-García, Olga
Fernández-Sánchez, Elena
Medraño-Fernández, Iria
Domínguez, Jorge
García-Rocha, Mar
Soriano, Eduardo
Rodríguez de Córdoba, Santiago
Guinovart, Joan J.
Vilchez, David
Ros, Susana
Cifuentes, Daniel
Pujadas, Lluís
Vallès, Jordi
García-Fojeda García-Valdecasas, María Belén
Criado-García, Olga
Fernández-Sánchez, Elena
Medraño-Fernández, Iria
Domínguez, Jorge
García-Rocha, Mar
Soriano, Eduardo
Rodríguez de Córdoba, Santiago
Guinovart, Joan J.
Publication Year :
2024

Abstract

Glycogen synthesis is normally absent in neurons. However, inclusion bodies resembling abnormal glycogen accumulate in several neurological diseases, particularly in progressive myoclonus epilepsy or Lafora disease. We show here that mouse neurons have the enzymatic machinery for synthesizing glycogen, but that it is suppressed by retention of muscle glycogen synthase (MGS) in the phosphorylated, inactive state. This suppression was further ensured by a complex of laforin and malin, which are the two proteins whose mutations cause Lafora disease. The laforin-malin complex caused proteasome-dependent degradation both of the adaptor protein targeting to glycogen, PTG, which brings protein phosphatase 1 to MGS for activation, and of MGS itself. Enforced expression of PTG led to glycogen deposition in neurons and caused apoptosis. Therefore, the malin-laforin complex ensures a blockade of neuronal glycogen synthesis even under intense glycogenic conditions. Here we explain the formation of polyglucosan inclusions in Lafora disease by demonstrating a crucial role for laforin and malin in glycogen synthesis.<br />Ministerio de Educación y Ciencia<br />Instituto de Salud Carlos III<br />Fundació La Caixa<br />Fundació La Marató de TV3<br />Fundación Marcelino Botín<br />Depto. de Bioquímica y Biología Molecular<br />Fac. de Ciencias Químicas<br />TRUE<br />pub

Details

Database :
OAIster
Notes :
application/pdf, 1097-6256, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1429626811
Document Type :
Electronic Resource