Glial alterations in the glutamatergic and GABAergic signaling pathways in a mouse model of Lafora disease, a severe form of progressive myoclonus epilepsy
Viana, R.; Rubio, T.; Campos-Rodriguez, A.; Sanz, P.
Show abstract
Lafora disease (LD; OMIM#254780) is a rare form of progressive myoclonus epilepsy characterized by the accumulation of insoluble deposits of aberrant glycogen (polyglucosans), named Lafora bodies (LBs), in the brain but also in peripheral tissues. It is assumed that the accumulation of LBs is related to the appearance of the characteristic pathological features of the disease. In mouse models of LD, we and others have reported an increase in the levels of reactive astrocytes and activated microglia, which triggers the expression of the different pro-inflammatory mediators. Recently, we have demonstrated that the TNF and IL-6 inflammatory signaling pathways are the main mediators of the neuroinflammatory phenotype associated with the disease. In this work, we present evidence that the activation of these pathways produces a dysregulation in the levels of different subunits of the excitatory ionotropic glutamatergic receptors (phopho-GluN2B, phospho-GluA2, GluK2) and also an increase in the levels of the GABA transporter GAT1 in the hippocampus of the Epm2b-/- mice. In addition, we present evidence of the presence of activated forms of the Src and Lyn protein kinases in this area. These effects may increase the excitatory glutamatergic signaling and decrease the inhibitory GABAergic tone, leading to hyper-excitability. More importantly, the enhanced production of these subunits occurs in non-neuronal cells such as activated microglia and reactive astrocytes, pointing out a key role of glia in the pathophysiology of LD.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Proteomic signature of the Dravet syndrome in the genetic Scn1a-A1783V mouse model 95%
- Neuronal kinase SGK1.1 protects against brain damage after status epilepticus 95%
- Defects in AMPAR trafficking and microglia activation underlie socio-cognitive deficits associated to decreased expression of Phosphodiesterase 2A 94%
Similar papers in this journal
- Neurotensin receptor 2 is induced in astrocytes and brain endothelial cells in relation to status epilepticus and neuroinflammation following pilocarpine administration in rats 96%
- Deletion of calcineurin from GFAP-expressing astrocytes impairs excitability of cerebellar and hippocampal neurons through astroglial Na+/K+ ATPase. 96%
- Microglia control glutamatergic synapses in the adult mouse hippocampus 95%
Similar papers in this journal
- Autocrine regulation of adult neurogenesis by the endocannabinoid 2-arachidonoylglycerol (2-AG) 96%
- Deletion of the Clock Gene Period2 (Per2) in Glial Cells Alters Mood-Related Behavior in Mice 94%
- Physiological significance of proteolytic processing of Reelin revealed by cleavage-resistant Reelin knock-in mice 94%
Similar papers in this journal
- All-trans retinoic acid induces synaptopodin-dependent metaplasticity in mouse dentate granule cells 96%
- A peptide-neurotensin conjugate that crosses the blood-brain barrier induces pharmacological hypothermia associated with anticonvulsant, neuroprotective and anti-inflammatory properties following status epilepticus in mice 95%
- A class-specific effect of dysmyelination on the excitability of hippocampal interneurons 94%
Similar papers in this journal
- Lack of p62 impairs glycogen aggregation and exacerbates pathology in a mouse model of myoclonic epilepsy of Lafora 95%
- Nuclear inhibitor of protein phosphatase 1 (NIPP1) regulates CNS tau phosphorylation and myelination during development 94%
- HDAC4 Inhibits NMDA Receptor-Mediated Stimulation of Neurogranin Expression 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.