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Widespread microRNA dysregulation in multiple system atrophy - disease-related alteration in miR-96
Kiren Ubhi1, Edward Rockenstein1, Christine Kragh2
1Department of Neurosciences, University of California, La Jolla, CA, 92093-0624, USA.
Abstract:
MicroRNA (miRNA) are short sequences of RNA that function as post-transcriptional regulators by binding to target mRNA transcripts resulting in translational repression. A number of recent studies have identified miRNA as being involved in neurodegenerative disorders including Alzheimer's disease, Parkinson's disease and Huntington's disease. However, the role of miRNA in multiple system atrophy (MSA), a progressive neurodegenerative disorder characterized by oligodendroglial accumulation of alpha-synuclein remains unexamined. In this context, this study examined miRNA profiles in MSA cases compared with controls and in transgenic (tg) models of MSA compared with non-tg mice. The results demonstrate a widespread dysregulation of miRNA in MSA cases, which is recapitulated in the murine models. The study employed a cross-disease, cross-species approach to identify miRNA that were either specifically dysregulated in MSA or were commonly dysregulated in neurodegenerative conditions such as Alzheimer's disease, dementia with Lewy bodies, progressive supranuclear palsy and corticobasal degeneration or the tg mouse model equivalents of these disorders. Using this approach we identified a number of miRNA that were commonly dysregulated between disorders and those that were disease-specific. Moreover, we identified miR-96 as being up-regulated in MSA. Consistent with the up-regulation of miR-96, mRNA and protein levels of members of the solute carrier protein family SLC1A1 and SLC6A6, miR-96 target genes, were down-regulated in MSA cases and a tg model of MSA. These results suggest that miR-96 dysregulation may play a role in MSA and its target genes may be involved in the pathogenesis of MSA.
Insights
MicroRNAs (miRNAs) are dysregulated in multiple system atrophy (MSA), a neurodegenerative disease. Researchers found miR-96 is up-regulated in MSA, suggesting its role in the disease's development.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) are crucial post-transcriptional regulators implicated in various neurodegenerative disorders.
- The role of miRNAs in multiple system atrophy (MSA), a progressive neurodegenerative disease, remains largely unexplored.
- Oligodendroglial alpha-synuclein accumulation characterizes MSA pathology.
Purpose of the Study:
- To investigate miRNA profiles in human MSA cases and transgenic mouse models.
- To identify specific and commonly dysregulated miRNAs in MSA compared to other neurodegenerative diseases.
- To explore the functional role of identified miRNAs in MSA pathogenesis.
Main Methods:
- Comparative analysis of miRNA expression in MSA patients versus controls.
- Analysis of miRNA profiles in transgenic MSA mouse models versus non-transgenic littermates.
- Cross-disease and cross-species comparison of miRNA dysregulation patterns.
Main Results:
- Widespread miRNA dysregulation was observed in MSA cases and recapitulated in mouse models.
- A distinct set of miRNAs were found to be specifically dysregulated in MSA.
- miR-96 was identified as significantly up-regulated in MSA, with corresponding down-regulation of its target genes (SLC1A1, SLC6A6).
Conclusions:
- miRNA dysregulation is a significant feature of MSA.
- miR-96 up-regulation and subsequent down-regulation of its target genes may contribute to MSA pathogenesis.
- This study highlights potential therapeutic targets for MSA by focusing on miRNA pathways.
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