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Published on: May 21, 2019
MicroRNA-10a inhibits A30P α-synuclein aggregation and toxicity by targeting proapoptotic protein BCL2L11
Huimin Liang1, Bingqian Ding1, Junhui Liang2
1Department of Neurology, Huaihe Hospital of Henan University Kaifeng, Henan, P. R. China.
Abstract:
Parkinson's disease (PD) is the second most common neurodegenerative disorder around the world, and is characterized by progressive loss of nigrostriatal dopaminergic neurons. Certain microRNAs (miRNAs) are aberrantly expressed in the post-mortem brain tissues of patients with PD and in vivo PD model mice. However, the role of brain-enriched miRNA (miR)-10a in PD has not been studied. To investigate the regulatory role of miR-10a on α-synuclein (α-syn) in the pathology of PD, the present study aimed to examine whether upregulation of miR-10a attenuated A30P α-syn mutant aggregation and cellular toxicity. miRNA expression analysis by reverse transcription-quantitative polymerase chain reaction demonstrated that miR-10a expression was decreased in the midbrain of A30P α-syn transgenic mice and in SH-SY5Y human neuroblastoma cells transfected with A30P α-syn. In addition, miR-10a mimics were used to upregulate miR-10a expression. It was revealed that the upregulation of miR-10a suppressed α-syn intracellular accumulation and toxicity in α-syn-overexpressing SH-SY5Y cells. In addition, miR-10a overexpression resulted in a reversal of the A30P α-syn-induced upregulation of proapoptotic protein Bcl-2-associated X protein and cleaved caspase-3 expression and downregulation of antiapoptotic protein B-cell lymphoma-2 (BCL2) expression. A luciferase reporter assay demonstrated that BCL2-like 11 (BCL2L11), an apoptosis inducer, was a novel target gene of miR-10a. A30P α-syn aggregation and toxicity were alleviated by knocking down endogenous BCL2L11 in SH-SY5Y cells using a small interfering RNA specific for BCL2L11. In conclusion, these results demonstrate that miR-10a may serve a functional role in α-syn-induced neuronal pathology by inhibiting expression of BCL2L11 and that upregulation of miR-10a expression may be a useful therapeutic strategy for the treatment of PD.
Insights
MicroRNA-10a (miR-10a) is decreased in Parkinson's disease (PD) models. Upregulating miR-10a reduces alpha-synuclein aggregation and toxicity, suggesting miR-10a as a potential therapeutic target for PD.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Parkinson's disease (PD) is a prevalent neurodegenerative disorder.
- Aberrant microRNA (miRNA) expression is observed in PD.
- The role of brain-enriched miR-10a in PD pathogenesis remains uninvestigated.
Purpose of the Study:
- To investigate the regulatory role of miR-10a on alpha-synuclein (α-syn) in PD.
- To determine if miR-10a upregulation can attenuate A30P α-syn mutant aggregation and cellular toxicity.
Main Methods:
- Quantitative polymerase chain reaction (qPCR) for miRNA expression analysis.
- Transfection of SH-SY5Y cells with α-syn and miR-10a mimics.
- Luciferase reporter assay to identify miR-10a targets.
- Small interfering RNA (siRNA) to knockdown BCL2L11.
Main Results:
- miR-10a expression was decreased in PD models (A30P α-syn transgenic mice and cells).
- miR-10a mimics suppressed α-syn accumulation and toxicity, and reversed apoptosis-related protein changes.
- BCL2-like 11 (BCL2L11) was identified as a direct target of miR-10a.
- Knocking down BCL2L11 alleviated A30P α-syn-induced toxicity.
Conclusions:
- miR-10a plays a functional role in α-syn-induced neuronal pathology by targeting BCL2L11.
- Upregulation of miR-10a shows therapeutic potential for Parkinson's disease treatment.
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