MiR-142-3p is a Critical Modulator of TNF-mediated Neuronal Toxicity in Multiple Sclerosis

Author:

De Vito Francesca1,Balletta Sara12,Caioli Silvia1,Musella Alessandra34,Guadalupi Livia23,Vanni Valentina3,Fresegna Diego3,Bassi Mario Stampanoni1,Gilio Luana1,Sanna Krizia2,Gentile Antonietta3,Bruno Antonio12,Dolcetti Ettore12,Buttari Fabio1,Pavone Luigi1,Furlan Roberto5,Finardi Annamaria5,Perlas Emerald6,Hornstein Eran7,Centonze Diego12,Mandolesi Georgia34

Affiliation:

1. Unit of Neurology, IRCCS Neuromed, Pozzilli, Isernia, Italy

2. Department of Systems Medicine, Tor Vergata University, Rome, Italy

3. Synaptic Immunopathology Lab, IRCCS San Raffaele Roma, Rome, Italy

4. Department of Human Sciences and Quality of Life Promotion University of Rome San Raffaele, Rome, Italy

5. Neuroimmunology Unit, Institute of Experimental Neurology (INSpe), Division of Neuroscience, San Raffaele Scientific Institute, Milan, Italy

6. Mouse Biology Unit, European Molecular Biology Laboratory, Monterotondo Scalo, Rome, Italy

7. Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel

Abstract

Background: TNF-dependent synaptotoxicity contributes to the neuronal damage occurring in patients with Multiple Sclerosis (pwMS) and its mouse model Experimental Autoimmune Encephalomyelitis (EAE). Here, we investigated miR-142-3p, a synaptotoxic microRNA induced by inflammation in EAE and MS, as a potential downstream effector of TNF signalling. Methods: Electrophysiological recordings, supported by molecular, biochemical and histochemical analyses, were performed to explore TNF-synaptotoxicity in the striatum of EAE and healthy mice. MiR-142 heterozygous (miR-142 HE) mice and/or LNA-anti miR-142-3p strategy were used to verify the TNF-miR-142-3p axis hypothesis. The cerebrospinal fluid (CSF) of 151 pwMS was analysed to evaluate possible correlation between TNF and miR-142-3p levels and their impact on clinical parameters (e.g. progression index (PI), age-related clinical severity (gARMSS)) and MRI measurements at diagnosis (T0). Results: High levels of TNF and miR-142-3p were detected in both EAE striatum and MS-CSF. The TNF-dependent glutamatergic alterations were prevented in the inflamed striatum of EAE miR-142 HE mice. Accordingly, TNF was ineffective in healthy striatal slices incubated with LNA-anti miR- 142-3p. However, both preclinical and clinical data did not validate the TNF-miR-142-3p axis hypothesis, suggesting a permissive neuronal role of miR-142-3p on TNF-signalling. Clinical data showed a negative impact of each molecule on disease course and/or brain lesions and unveiled that their high levels exert a detrimental synergistic effect on disease activity, PI and white matter lesion volume. Conclusion: We propose miR-142-3p as a critical modulator of TNF-mediated neuronal toxicity and suggest a detrimental synergistic action of these molecules on MS pathology.

Funder

Italian Ministry of Health

FISM-Fondazione Italiana Sclerosi Multipla

Publisher

Bentham Science Publishers Ltd.

Subject

Pharmacology (medical),Psychiatry and Mental health,Neurology (clinical),Neurology,Pharmacology,General Medicine

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