Multiple sclerosis: Re-expression of a developmental pathway that restricts oligodendrocyte maturation
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- 23 September 2002
- journal article
- research article
- Published by Springer Nature in Nature Medicine
- Vol. 8 (10) , 1115-1121
- https://doi.org/10.1038/nm781
Abstract
During mammalian central nervous system (CNS) development, contact-mediated activation of Notch1 receptors on oligodendrocyte precursors by the ligand Jagged1 induces Hes5, which inhibits maturation of these cells. Here we tested whether the Notch pathway is re-expressed in the adult CNS in multiple sclerosis (MS), an inflammatory demyelinating disease in which remyelination is typically limited. We found that transforming growth factor-β1 (TGF-β1), a cytokine upregulated in MS, specifically re-induced Jagged1 in primary cultures of human astrocytes. Within and around active MS plaques lacking remyelination, Jagged1 was expressed at high levels by hypertrophic astrocytes, whereas Notch1 and Hes5 localized to cells with an immature oligodendrocyte phenotype, and TGF-β1 was associated with perivascular extracellular matrix in the same areas. In contrast, there was negligible Jagged1 expression in remyelinated lesions. Experiments in vitro showed that Jagged1 signaling inhibited process outgrowth from primary human oligodendrocytes. These data are the first to implicate the Notch pathway in the limited remyelination in MS. Thus, Notch may represent a potential target for therapeutic intervention in this disease.Keywords
This publication has 25 references indexed in Scilit:
- Role of Transforming Growth Factor β in Human DiseaseNew England Journal of Medicine, 2000
- Contact-Dependent Inhibition of Cortical Neurite Growth Mediated by Notch SignalingScience, 1999
- Human Ligands of the Notch ReceptorThe American Journal of Pathology, 1999
- Axonal Transection in the Lesions of Multiple SclerosisNew England Journal of Medicine, 1998
- Mechanisms of Immune Injury in Multiple SclerosisBrain Pathology, 1996
- Effects of Transforming Growth Factor β1, on Scar Production in the Injured Central Nervous System of the RatEuropean Journal of Neuroscience, 1994
- Targeted disruption of the mouse transforming growth factor-β1 gene results in multifocal inflammatory diseaseNature, 1992
- Biochemical characterization of a gamma interferon-inducible cytokine (IP-10).The Journal of Experimental Medicine, 1987
- Central remyelination restores secure conductionNature, 1979
- Effect of Demyelination on Conduction in the Central Nervous SystemNature, 1969