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Published on: January 21, 2012
The p107 tumor suppressor induces stable E2F DNA binding to repress target promoters
R J O'Connor1, J E Schaley, G Feeney
1Department of Molecular Genetics and Microbiology, School of Medicine, State University of New York, Stony Brook, New York, NY 11794, USA.
Abstract:
E2F transcription factors are key players in the regulation of proliferation, apoptosis, and differentiation in mammalian cells. E2Fs are negatively regulated by members of the retinoblastoma protein family, Rb, p107 and p130. During adenovirus infection, viral proteins are expressed that displace Rb family members from E2Fs and recruit E2F complexes to viral and cellular promoter regions. This recruitment of E2F involves the induction of stable E2F binding to inverted E2F binding sites in the Ad E2a and cellular E2F-1 promoters and induces both viral and cellular gene expression. The cellular p107 tumor suppressor also displays such regulation of E2F DNA binding activity. p107 induces stable E2F-4/DP binding to inverted E2F binding sites in the Ad E2a and cellular E2F-1 promoters. The induction of E2F DNA binding by p107 minimally requires the sequences in p107 that mediate E2F interaction. The related tumor suppressor, p130, also effects this function. p107 levels increase substantially as cells progress through S phase. p107 induction of E2F DNA binding was observed primarily in S phase cells coincident with the increase in p107 protein levels. The results of promoter activity assays directly correlate the induction of E2F DNA binding by p107 with effective transcriptional repression. These results support a model in which p107 and p130 induce the stable binding of E2F complexes to promoters that drive expression of critical regulatory proteins such as E2F-1. Since p107 and p130 bind histone deacetylase complexes (HDACs) which repress promoter activity, p107-E2F and p130-E2F would stably recruit repressor complexes to effect efficient promoter repression.
Insights
Tumor suppressors p107 and p130 regulate E2F transcription factors, controlling cell proliferation and gene expression. These proteins induce stable E2F binding to promoters, leading to transcriptional repression, particularly in S phase cells.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- E2F transcription factors regulate key cellular processes like proliferation and apoptosis.
- Members of the retinoblastoma protein family (Rb, p107, p130) negatively regulate E2F activity.
- Viral proteins, such as during adenovirus infection, can disrupt Rb-E2F interactions.
Purpose of the Study:
- To investigate the role of p107 and p130 in regulating E2F DNA binding activity.
- To understand how p107 and p130 influence viral and cellular gene expression.
- To elucidate the mechanism of transcriptional repression mediated by p107 and p130.
Main Methods:
- Analysis of E2F DNA binding in the presence of p107 and p130.
- Promoter activity assays to assess transcriptional regulation.
- Investigation of protein-protein interactions between E2F, p107, p130, and histone deacetylase complexes (HDACs).
Main Results:
- p107 induces stable E2F-4/DP binding to specific DNA sites in viral (Ad E2a) and cellular (E2F-1) promoters.
- This induction of E2F DNA binding by p107 is most prominent in S phase cells.
- Promoter activity assays show a direct correlation between p107-induced E2F binding and transcriptional repression.
- p107 and p130 bind HDACs, suggesting a mechanism for repressor complex recruitment.
Conclusions:
- p107 and p130 promote stable binding of E2F complexes to promoters.
- This stable binding, coupled with HDAC recruitment, leads to efficient transcriptional repression.
- These findings highlight a crucial role for p107 and p130 in controlling gene expression through E2F regulation.
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