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Distribution and functional significance of rodent cerebellar glycogen

  • Sonam Akther
  • , Ashley Bomin Lee
  • , Ayumu Konno
  • , Antonis Asiminas
  • , Marta Vittani
  • , Tsuneko Mishima
  • , Hirokazu Hirai
  • , Claire Francesca Meehan
  • , Jordi Duran
  • , Joan Guinovart
  • , Hitoshi Ashida
  • , Tsuyoshi Morita
  • , Otto Baba
  • , Ryuichi Shigemoto
  • , Maiken Nedergaard
  • , Hajime Hirase*
  • *Corresponding author for this work

Research output: Indexed journal article Articlepeer-review

Abstract

The mammalian brain stores glucose, the main circulating energy substrate, as glycogen. In rodents, the cerebellum contains relatively high glycogen levels, yet its cellular and subcellular distribution remains poorly defined. Using monoclonal antibodies against glycogen, we examined its distribution in the mouse cerebellar cortex. Glycogen was predominantly localized to Bergmann glia (BG) processes in the molecular layer and was also detected in Purkinje cells (PCs), the principal cerebellar neurons. To assess the functional significance of cerebellar glycogen, we analyzed behavior in mice lacking glycogen synthase 1 (Gys1) in BG or PCs using a floxed Gys1 line. Gys1 deficiency in either PCs or GFAP-positive cells reduced anxiety-like behavior, whereas combined deletion caused PC degeneration and ataxia. These findings reveal a critical role for glycogen metabolism in both astrocytes and neurons in cerebellar function.

Original languageEnglish
Article number115192
Number of pages20
JournaliScience
Volume29
Issue number4
DOIs
Publication statusPublished - 17 Apr 2026

Keywords

  • Cellular neuroscience
  • Molecular neuroscience

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