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.

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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