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Inhibitory effects of novel E2F decoy oligodeoxynucleotides on mesangial cell proliferation by coexpression of E2F/DP
Kwan-Kyu Park1, Jong Deok Ahn, In-Kyu Lee
1Kidney Institute, Keimyung University School of Medicine, 194, Dongsan-Dong, Jung-Gu, Daegu 700-712, South Korea.
Abstract:
Proliferation of glomerular mesangial cells (MCs) is an important feature of several forms of glomerulonephritis. The transcription factor E2F coordinately regulates expression of genes required for cell proliferation, thereby mediating cell growth control. Here we investigated the role of E2F1 and E2F4 expression, with or without co-expression of DP1 or DP2, on cell proliferation in transiently transfected primary rat MCs. In transfected cells, cell proliferation induced by over-expression of E2F was significantly enhanced by co-expression of DP proteins. Previous studies showed that the transfection of decoy oligodeoxynucleotides (ODNs) corresponding to E2F binding sites inhibits cell proliferation. Here we have developed a Ring-E2F (R-E2F) decoy ODN with a circular dumbbell structure and compared its effects with those of a phosphorothioated E2F decoy (PS-E2F decoy) ODN. The R-E2F decoy ODN showed enhanced stability in the presence of nucleases and sera, and inhibited E2F/DP-dependent promoter activity of cell cycle genes more effectively than the PS-E2F decoy ODN. Transfection of R-E2F decoy ODN resulted in strong inhibition of cell cycle gene expression and MC proliferation. Our data suggest that E2F/DP complexes play a critical role in the MC proliferation and that the R-E2F decoy ODN may be a powerful tool for inhibiting cell proliferation.
Insights
Glomerular mesangial cell proliferation in glomerulonephritis is regulated by E2F transcription factors. A novel circular Ring-E2F decoy oligodeoxynucleotide effectively inhibits cell cycle gene expression and mesangial cell proliferation.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Glomerular mesangial cell (MC) proliferation is a hallmark of glomerulonephritis.
- Transcription factors of the E2F family regulate genes essential for cell proliferation and growth control.
Purpose of the Study:
- To investigate the role of E2F1 and E2F4, with or without DP proteins, in MC proliferation.
- To develop and evaluate a novel Ring-E2F (R-E2F) decoy oligodeoxynucleotide (ODN) for inhibiting MC proliferation.
Main Methods:
- Transient transfection of primary rat MCs with E2F/DP expression vectors.
- Development and characterization of a circular R-E2F decoy ODN.
- Comparison of R-E2F decoy ODN with a phosphorothioated E2F decoy (PS-E2F decoy) ODN.
- Assessment of decoy ODN effects on E2F/DP-dependent promoter activity and MC proliferation.
Main Results:
- E2F-induced MC proliferation was enhanced by co-expression of DP proteins.
- R-E2F decoy ODN demonstrated enhanced stability and superior inhibition of E2F/DP-dependent promoter activity compared to PS-E2F decoy ODN.
- Transfection with R-E2F decoy ODN significantly inhibited cell cycle gene expression and MC proliferation.
Conclusions:
- E2F/DP complexes are critical regulators of MC proliferation.
- The R-E2F decoy ODN is a potent and stable tool for inhibiting MC proliferation, offering potential therapeutic applications in glomerulonephritis.