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Age-Related microRNA Overexpression in Lafora Disease Male Mice Provides Links between Neuroinflammation and
Carlos Romá-Mateo1,2,3, Sheila Lorente-Pozo4, Lucía Márquez-Thibaut5
1Department of Physiology, Facultat de Medicina i Odontologia, Universitat de València, 46010 Valencia, Spain.
Abstract:
Lafora disease is a rare, fatal form of progressive myoclonus epilepsy characterized by continuous neurodegeneration with epileptic seizures, characterized by the intracellular accumulation of aberrant polyglucosan granules called Lafora bodies. Several works have provided numerous evidence of molecular and cellular alterations in neural tissue from experimental mouse models deficient in either laforin or malin, two proteins related to the disease. Oxidative stress, alterations in proteostasis, and deregulation of inflammatory signals are some of the molecular alterations underlying this condition in both KO animal models. Lafora bodies appear early in the animal's life, but many of the aforementioned molecular aberrant processes and the consequent neurological symptoms ensue only as animals age. Here, using small RNA-seq and quantitative PCR on brain extracts from laforin and malin KO male mice of different ages, we show that two different microRNA species, miR-155 and miR-146a, are overexpressed in an age-dependent manner. We also observed altered expression of putative target genes for each of the microRNAs studied in brain extracts. These results open the path for a detailed dissection of the molecular consequences of laforin and malin deficiency in brain tissue, as well as the potential role of miR-155 and miR-146a as specific biomarkers of disease progression in LD.
Insights
Lafora disease (LD) involves neurodegeneration and seizures due to Lafora body accumulation. This study identifies age-dependent overexpression of miR-155 and miR-146a in mouse models, suggesting their role in disease progression.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Lafora disease (LD) is a fatal neurodegenerative epilepsy.
- It's characterized by Lafora body accumulation in neurons.
- Laforin and malin protein deficiencies are linked to LD pathogenesis, causing oxidative stress and proteostasis alterations.
Purpose of the Study:
- To investigate age-dependent molecular changes in laforin and malin knockout (KO) mouse models of LD.
- To identify microRNAs involved in the progression of Lafora disease.
Main Methods:
- Small RNA sequencing (small RNA-seq) and quantitative PCR (qPCR) were performed on brain extracts.
- Analysis included laforin and malin KO male mice at different ages.
Main Results:
- Two microRNA species, miR-155 and miR-146a, showed age-dependent overexpression in KO mice.
- Altered expression of predicted target genes for these microRNAs was observed in brain tissue.
Conclusions:
- miR-155 and miR-146a are upregulated with age in laforin/malin deficient mice.
- These microRNAs may play a role in Lafora disease progression.
- miR-155 and miR-146a show potential as biomarkers for LD progression.

