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MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy

Synucleinopathies, neurodegenerative disorders with alpha-synuclein (α-syn) accumulation, are the second leading cause of neurodegeneration in the elderly, however no effective disease-modifying alternatives exist for these diseases. Multiple system atrophy (MSA) is a fatal synucleinopathy character...

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Autores principales: Valera, Elvira, Spencer, Brian, Mott, Jennifer, Trejo, Margarita, Adame, Anthony, Mante, Michael, Rockenstein, Edward, Troncoso, Juan C., Beach, Thomas G., Masliah, Eliezer, Desplats, Paula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5650998/
https://www.ncbi.nlm.nih.gov/pubmed/29089869
http://dx.doi.org/10.3389/fnmol.2017.00329
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author Valera, Elvira
Spencer, Brian
Mott, Jennifer
Trejo, Margarita
Adame, Anthony
Mante, Michael
Rockenstein, Edward
Troncoso, Juan C.
Beach, Thomas G.
Masliah, Eliezer
Desplats, Paula
author_facet Valera, Elvira
Spencer, Brian
Mott, Jennifer
Trejo, Margarita
Adame, Anthony
Mante, Michael
Rockenstein, Edward
Troncoso, Juan C.
Beach, Thomas G.
Masliah, Eliezer
Desplats, Paula
author_sort Valera, Elvira
collection PubMed
description Synucleinopathies, neurodegenerative disorders with alpha-synuclein (α-syn) accumulation, are the second leading cause of neurodegeneration in the elderly, however no effective disease-modifying alternatives exist for these diseases. Multiple system atrophy (MSA) is a fatal synucleinopathy characterized by the accumulation of toxic aggregates of α-syn within oligodendroglial cells, leading to demyelination and neurodegeneration, and the reduction of this accumulation might halt the fast progression of MSA. In this sense, the involvement of microRNAs (miRNAs) in synucleinopathies is yet poorly understood, and the potential of manipulating miRNA levels as a therapeutic tool is underexplored. In this study, we analyzed the levels of miRNAs that regulate the expression of autophagy genes in MSA cases, and investigated the mechanistic correlates of miRNA dysregulation in in vitro models of synucleinopathy. We found that microRNA-101 (miR-101) was significantly increased in the striatum of MSA patients, together with a reduction in the expression of its predicted target gene RAB5A. Overexpression of miR-101 in oligodendroglial cell cultures resulted in a significant increase in α-syn accumulation, along with autophagy deficits. Opposite results were observed upon expression of an antisense construct targeting miR-101. Stereotaxic delivery of a lentiviral construct expressing anti-miR-101 into the striatum of the MBP-α-syn transgenic (tg) mouse model of MSA resulted in reduced oligodendroglial α-syn accumulation and improved autophagy. These results suggest that miRNA dysregulation contributes to MSA pathology, with miR-101 alterations potentially mediating autophagy impairments. Therefore, therapies targeting miR-101 may represent promising approaches for MSA and related neuropathologies with autophagy dysfunction.
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spelling pubmed-56509982017-10-31 MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy Valera, Elvira Spencer, Brian Mott, Jennifer Trejo, Margarita Adame, Anthony Mante, Michael Rockenstein, Edward Troncoso, Juan C. Beach, Thomas G. Masliah, Eliezer Desplats, Paula Front Mol Neurosci Neuroscience Synucleinopathies, neurodegenerative disorders with alpha-synuclein (α-syn) accumulation, are the second leading cause of neurodegeneration in the elderly, however no effective disease-modifying alternatives exist for these diseases. Multiple system atrophy (MSA) is a fatal synucleinopathy characterized by the accumulation of toxic aggregates of α-syn within oligodendroglial cells, leading to demyelination and neurodegeneration, and the reduction of this accumulation might halt the fast progression of MSA. In this sense, the involvement of microRNAs (miRNAs) in synucleinopathies is yet poorly understood, and the potential of manipulating miRNA levels as a therapeutic tool is underexplored. In this study, we analyzed the levels of miRNAs that regulate the expression of autophagy genes in MSA cases, and investigated the mechanistic correlates of miRNA dysregulation in in vitro models of synucleinopathy. We found that microRNA-101 (miR-101) was significantly increased in the striatum of MSA patients, together with a reduction in the expression of its predicted target gene RAB5A. Overexpression of miR-101 in oligodendroglial cell cultures resulted in a significant increase in α-syn accumulation, along with autophagy deficits. Opposite results were observed upon expression of an antisense construct targeting miR-101. Stereotaxic delivery of a lentiviral construct expressing anti-miR-101 into the striatum of the MBP-α-syn transgenic (tg) mouse model of MSA resulted in reduced oligodendroglial α-syn accumulation and improved autophagy. These results suggest that miRNA dysregulation contributes to MSA pathology, with miR-101 alterations potentially mediating autophagy impairments. Therefore, therapies targeting miR-101 may represent promising approaches for MSA and related neuropathologies with autophagy dysfunction. Frontiers Media S.A. 2017-10-17 /pmc/articles/PMC5650998/ /pubmed/29089869 http://dx.doi.org/10.3389/fnmol.2017.00329 Text en Copyright © 2017 Valera, Spencer, Mott, Trejo, Adame, Mante, Rockenstein, Troncoso, Beach, Masliah and Desplats. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Valera, Elvira
Spencer, Brian
Mott, Jennifer
Trejo, Margarita
Adame, Anthony
Mante, Michael
Rockenstein, Edward
Troncoso, Juan C.
Beach, Thomas G.
Masliah, Eliezer
Desplats, Paula
MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy
title MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy
title_full MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy
title_fullStr MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy
title_full_unstemmed MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy
title_short MicroRNA-101 Modulates Autophagy and Oligodendroglial Alpha-Synuclein Accumulation in Multiple System Atrophy
title_sort microrna-101 modulates autophagy and oligodendroglial alpha-synuclein accumulation in multiple system atrophy
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5650998/
https://www.ncbi.nlm.nih.gov/pubmed/29089869
http://dx.doi.org/10.3389/fnmol.2017.00329
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