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Published on: October 3, 2012
miR-185 and SEPT5 Genes May Contribute to Parkinson's Disease Pathophysiology
Arman Rahimmi1,2, Ilaria Peluso3, Aref Rajabi4
1Student Research Committee, Kurdistan University of Medical Sciences, Sanandaj, Iran.
Abstract:
There are still unknown mechanisms involved in the development of Parkinson's disease (PD), which elucidating them can assist in developing efficient therapies. Recently, studies showed that genes located on the human chromosomal location 22q11.2 might be involved in the development of PD. Therefore, the present study was designed to evaluate the role of two genes located on the chromosomal location (miR-185 and SEPT5), which were the most probable candidates based on our bibliography. In vivo and in vitro models of PD were developed using male Wistar rats and SHSY-5Y cell line, respectively. The expression levels of miR-185, SEPT5, LRRK2, and PARK2 genes were measured at a mRNA level in dopaminergic areas of rats' brains and SHSY-5Y cells using the SYBR Green Real-Time PCR Method. Additionally, the effect of inhibition on the genes or their products on cell viability and gene expression pattern in SHSY-5Y cells was investigated. The level of miR-185 gene expression was significantly decreased in the substantia nigra (SN) and striatum (ST) of the rotenone-treated group (control group) compared to the healthy normal group (P < 0.05). In addition, there was a significant difference in the expression of SEPT5 gene (P < 0.05) in the substantia nigra between two studied groups. The results of an in vitro study showed no significant change in the expression of the genes; however, the inhibition on miR-185 gene expression led to the increase in LRRK2 gene expression in SHSY-5Y cells. The inhibition on LRRK2 protein also decreased the cellular toxicity effect of rotenone on SHSY-5Y cells. The results suggested the protective role of miR-185 gene in preventing the development of PD.
Insights
Parkinson's disease (PD) mechanisms are unclear. This study found miR-185 may protect against PD by regulating LRRK2 expression and reducing rotenone toxicity in brain cells.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Parkinson's disease (PD) pathogenesis involves unknown mechanisms, prompting investigation into genetic factors.
- The human chromosomal region 22q11.2 is implicated in PD development.
- miR-185 and SEPT5 are candidate genes on 22q11.2 potentially involved in PD.
Purpose of the Study:
- To investigate the role of miR-185 and SEPT5 in Parkinson's disease.
- To evaluate the expression of miR-185, SEPT5, LRRK2, and PARK2 in PD models.
- To determine the effect of miR-185 and LRRK2 modulation on cell viability and gene expression.
Main Methods:
- Development of in vivo (male Wistar rats) and in vitro (SHSY-5Y cells) PD models.
- Quantification of gene expression using SYBR Green Real-Time PCR.
- Assessment of cell viability and gene expression following gene inhibition.
Main Results:
- Significant decrease in miR-185 expression in the substantia nigra and striatum of rotenone-treated rats.
- Significant difference in SEPT5 gene expression in the substantia nigra of PD model rats.
- Inhibition of miR-185 increased LRRK2 expression in SHSY-5Y cells.
- Inhibition of LRRK2 protein reduced rotenone-induced cellular toxicity.
Conclusions:
- miR-185 exhibits a potential protective role in preventing Parkinson's disease development.
- miR-185 may influence PD pathogenesis through regulation of LRRK2.
- SEPT5 expression is altered in a PD model, suggesting its involvement.
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