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Dysregulation of LINGO1 expression in the SOD1(G93A) mutant mice during symptomatic stages of the disease and early postnatal oligodendrogenesis

Created on 06 Sep 2026

Authors

Zahaf, A., Bourseguin, J., cobret, L., Kassoussi, A., Moussaed, M., Raoul, C., Traiffort, E., Morisset-Lopez, S.

Abstract

Oligodendrocytes play an essential role in axonal metabolic support and myelination, and their dysfunction is associated with amyotrophic lateral sclerosis (ALS). LINGO1 is a major inhibitor of oligodendrocyte differentiation and axonal regeneration, identified as a promising therapeutic targeted for inflammatory demyelinating diseases. Here, we investigated the expression pattern of LINGO1 in the well-established SOD1(G93A) transgenic mouse model of ALS. We show that LINGO1 protein expression is significantly elevated in both grey and white matter of the mutant spinal cord during both the symptomatic and end stages of the disease. LINGO1 is also notably co-expressed with astroglial and neuronal markers. However, neither the levels of LINGO1 transcripts, nor levels of microRNAs predicted to regulate its expression were altered in the mutant spinal cord, suggesting the involvement of alternative regulatory mechanisms. Our analysis of microRNAs revealed in the mutant a significant downregulation of miR-138, a microRNA known to promote myelination. The differential expression of LINGO1 and miR-138 in ALS mice thus may drive deleterious processes during disease progression in adulthood. Moreover, our data show that white-matter pathology arises earlier than initially thought, as evidenced by significant alterations of oligodendrogenesis that manifest as early as postnatal day 5. Study of the molecular determinants of this developmental defect shows increased miR-138 expression, which may promote oligodendrocyte progenitor cell maturation and involve compensatory mechanisms. Overall, our work identifies disrupted expression of LINGO1 and/or miR-138 in brain during early oligodendrogenesis and at symptomatic disease stages. These findings open the way to further investigations that may consider miR-138 as a potential presymptomatic biomarker and LINGO1 as a therapeutic target to promote remyelination in the context of ALS.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 06 Sep 2026.

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