4.7 Article

Astrocytic glycogen accumulation drives the pathophysiology of neurodegeneration in Lafora disease

期刊

BRAIN
卷 144, 期 -, 页码 2349-2360

出版社

OXFORD UNIV PRESS
DOI: 10.1093/brain/awab110

关键词

Lafora disease; glycogen; neurodegeneration; neuroinflammation; epilepsy

资金

  1. MINECO (Government of Spain)
  2. MINECO [BFU2017-84345-P, RTI2018-099773-B-I00]
  3. CIBER de Diabetes y Enfermedades Metabo (ISCIII, Ministerio de Ciencia e Innovacio' n)
  4. National Institutes of Health (NIH-NINDS) [P01 NS097197]
  5. NIH [R35 NS116824, R01 AG066653]
  6. `la Caixa' Foundation [100010434, LCF/PR/HR19/52160007]

向作者/读者索取更多资源

Recent studies have shown that Lafora bodies are also present in astrocytes, not only in neurons. Blocking glycogen synthesis in astrocytes prevents the increase in neurodegeneration markers, autophagy impairment, and metabolic changes characteristic of the malin(KO) model.
The hallmark of Lafora disease, a fatal neurodegenerative disorder, is the accumulation of intracellular glycogen aggregates called Lafora bodies. Until recently, it was widely believed that brain Lafora bodies were present exclusively in neurons and thus that Lafora disease pathology derived from their accumulation in this cell population. However, recent evidence indicates that Lafora bodies are also present in astrocytes. To define the role of astrocytic Lafora bodies in Lafora disease pathology, we deleted glycogen synthase specifically from astrocytes in a mouse model of the disease (malin(KO)). Strikingly, blocking glycogen synthesis in astrocytes-thus impeding Lafora bodies accumulation in this cell type-prevented the increase in neurodegeneration markers, autophagy impairment, and metabolic changes characteristic of the malin(KO) model. Conversely, mice that over-accumulate glycogen in astrocytes showed an increase in these markers. These results unveil the deleterious consequences of the deregulation of glycogen metabolism in astrocytes and change the perspective that Lafora disease is caused solely by alterations in neurons.

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