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miR-34a regulates mesangial cell proliferation via the PDGFR-β/Ras-MAPK signaling pathway
Dapeng Chen1, Ying Li, Yan Mei
1State Key Laboratory of Kidney Diseases (2011DAV00088), Department of Nephrology, Chinese PLA Institute of Nephrology, National Clinical Research Center for Kidney Disease (2013BAI09B05), Chinese PLA General Hospital, 28 Fuxing Road, Beijing, 100853, People's Republic of China.
Abstract:
The main pathological characteristic of glomerulonephritis is diffuse mesangial cell proliferation. MiR-34a is associated with the proliferation of various organs and cancer cells. However, the role of miR-34a in renal proliferation diseases is not clear. Therefore, this study aimed to elucidate the mechanism of miR-34a in the regulation of renal mesangial cell proliferation. The miR-34a expression level at different time points in an anti-Thy1 mesangial proliferative nephritis rat model was determined by qRT-PCR. The cell proliferation rate and cell cycle changes were measured in the in vitro cultured rat mesangial cells (RMCs). Our results suggested that miR-34a expression was negatively correlated with the degree of cell proliferation in the anti-Thy1 nephritis model. MiR-34a could extend the G0/G1 phase and block cell proliferation in RMCs. Dual-luciferase assay results showed that there were binding sites of miR-34a at 3'-UTR of platelet-derived growth factor receptor-β (PDGFR-β). MiR-34a can inhibit PDGFR-β protein expression at a post-transcriptional level, suppress Ras/MAPK signaling pathways, and down-regulate expression of cell cycle proteins at the G0/G1 phase, such as cyclin D1, CDK4/CDK6. In addition, miR-34a may also inhibit RMC proliferation by directly targeting cyclin E and CDK2. MiR-34a inhibits exogenous stimuli-induced proliferation of mesangial cells. Expression levels of phospho-PDGFR-β and phospho-MEK1 (an important downstream molecule in PDGFR-β-induced signaling pathway) were significantly increased in the anti-Thy-1 nephritis rat model. These results suggest that miR-34a may regulate RMC proliferation by directly inhibiting expressions of PDGFR-β, MEK1, and cell cycle proteins, cyclin E and CDK2.
Insights
MicroRNA-34a (miR-34a) inhibits renal mesangial cell proliferation by targeting platelet-derived growth factor receptor-β (PDGFR-β) and cell cycle proteins. This finding clarifies miR-34a's role in kidney diseases.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Glomerulonephritis is characterized by mesangial cell proliferation.
- MicroRNA-34a (miR-34a) is implicated in cell proliferation in various tissues, but its role in renal proliferation diseases remains unclear.
Purpose of the Study:
- To investigate the mechanism by which miR-34a regulates renal mesangial cell proliferation.
Main Methods:
- Assessed miR-34a expression in an anti-Thy1 nephritis rat model using qRT-PCR.
- Measured cell proliferation and cell cycle changes in cultured rat mesangial cells (RMCs).
- Utilized dual-luciferase assays to identify miR-34a targets and analyzed protein expression levels.
Main Results:
- miR-34a expression inversely correlated with cell proliferation in the nephritis model.
- miR-34a induced G0/G1 phase arrest in RMCs, inhibiting proliferation.
- Identified platelet-derived growth factor receptor-β (PDGFR-β) as a direct target of miR-34a, with miR-34a inhibiting its post-transcriptional expression.
- Demonstrated that miR-34a suppresses Ras/MAPK signaling and down-regulates cell cycle proteins (cyclin D1, CDK4/CDK6, cyclin E, CDK2).
- Observed increased phospho-PDGFR-β and phospho-MEK1 in the nephritis model.
Conclusions:
- miR-34a inhibits renal mesangial cell proliferation by targeting PDGFR-β, MEK1, and cell cycle proteins (cyclin E, CDK2).
- This study elucidates a key mechanism of miR-34a in regulating mesangial cell proliferation, offering potential therapeutic insights for glomerulonephritis.
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