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Published on: May 3, 2017
Human miR-26a-5p regulates the glutamate transporter SLC1A1 (EAAT3) expression. Relevance in multiple sclerosis
Nicoletta Potenza1, Nicola Mosca1, Paolo Mondola2
1DISTABIF, University of Campania "Luigi Vanvitelli", Italy.
Abstract:
Multiple sclerosis (MS) is an autoimmune disease of the central nervous system, characterized by chronic inflammation, demyelination and scarring as well as a broad spectrum of signs and symptoms. MicroRNA plays pivotal roles in cellular and developmental processes by regulating gene expression at the post-transcriptional level. Increasing evidence suggests the involvement of microRNAs in the pathogenesis of neurodegenerative diseases, including MS. We have already found that the expression of a specific miRNA, hsa-mir-26a-5p (miR-26a), changed during INF-β treatment in responder Relapsing-Remitting MS patients. Functional annotations of mir-26a targets revealed that a number of genes were implicated in Glutamate Receptor Signaling pathway, which is notoriously altered in neurodegenerative diseases as MS. In this study, the different potential targets were subjected to a validation test based on luciferase reporter constructs transfected in an oligodendroglial cell line. In this functional screening, miR-26a was able to interact with SLC1A1 3' UTR suppressing the reporter activity. Transfection of a miR-26a mimic was then shown to decrease the endogenous SLC1A1 mRNA. Afterward, we have evaluated in blood platelets from interferon-β treated Multiple Sclerosis patients the expression of miR-26a and SLC1A1, finding not only their converse expression, but also a responsiveness to interferon-β therapy. Overall, these data suggest that mir-26a and SLC1A1 may play a role in the MS pathogenesis, and may be potential targets for the development of new biomarkers and/or therapeutic tools.
Insights
MicroRNA-26a and its target SLC1A1 show altered expression in multiple sclerosis (MS) patients and respond to interferon-beta therapy, suggesting their potential as therapeutic targets for MS.
Area of Science:
- Neuroimmunology
- Molecular Biology
- Genetics
Background:
- Multiple sclerosis (MS) is a central nervous system autoimmune disease involving inflammation and demyelination.
- MicroRNAs (miRNAs) regulate gene expression and are implicated in neurodegenerative disease pathogenesis.
- Previous findings indicated altered microRNA expression in MS patients treated with interferon-beta (IFN-β).
Purpose of the Study:
- To investigate the role of hsa-mir-26a-5p (miR-26a) and its potential targets in the context of MS.
- To validate the interaction between miR-26a and the solute carrier family 1 member 1 (SLC1A1) gene.
- To assess the expression and therapeutic responsiveness of miR-26a and SLC1A1 in MS patients.
Main Methods:
- Luciferase reporter assays were used to validate miR-26a interaction with SLC1A1 3' UTR in an oligodendroglial cell line.
- miR-26a mimic transfection was performed to assess its effect on endogenous SLC1A1 mRNA levels.
- Expression levels of miR-26a and SLC1A1 were quantified in blood platelets from IFN-β treated MS patients.
Main Results:
- miR-26a directly interacted with and suppressed the activity of the SLC1A1 3' UTR.
- Transfection with a miR-26a mimic reduced endogenous SLC1A1 mRNA levels.
- MS patients treated with IFN-β exhibited converse expression of miR-26a and SLC1A1 in blood platelets, with both showing responsiveness to therapy.
Conclusions:
- The data suggest a functional link between miR-26a and SLC1A1 in MS pathogenesis.
- miR-26a and SLC1A1 represent potential novel biomarkers for MS.
- These molecules may serve as future therapeutic targets for developing new treatments for MS.

