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Integrated high-throughput analysis identifies Sp1 as a crucial determinant of p53-mediated apoptosis
1Department of Microbiology, Tumor and Cell Biology Biology (MTC), Karolinska Institutet, 17177 Stockholm, Sweden.
Abstract:
The restoration of p53 tumor suppressor function is a promising therapeutic strategy to combat cancer. However, the biological outcomes of p53 activation, ranging from the promotion of growth arrest to the induction of cell death, are hard to predict, which limits the clinical application of p53-based therapies. In the present study, we performed an integrated analysis of genome-wide short hairpin RNA screen and gene expression data and uncovered a previously unrecognized role of Sp1 as a central modulator of the transcriptional response induced by p53 that leads to robust induction of apoptosis. Sp1 is indispensable for the pro-apoptotic transcriptional repression by p53, but not for the induction of pro-apoptotic genes. Furthermore, the p53-dependent pro-apoptotic transcriptional repression required the co-binding of Sp1 to p53 target genes. Our results also highlight that Sp1 shares with p53 a common regulator, MDM2, which targets Sp1 for proteasomal degradation. This uncovers a new mechanism of the tight control of apoptosis in cells. Our study advances the understanding of the molecular basis of p53-mediated apoptosis and implicates Sp1 as one of its key modulators. We found that small molecules reactivating p53 can differentially modulate Sp1, thus providing insights into how to manipulate p53 response in a controlled way.
Insights
The tumor suppressor p53
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Death Mechanisms
Background:
- Restoring p53 tumor suppressor function is a key cancer therapy strategy.
- Predicting p53 activation outcomes (growth arrest vs. cell death) is challenging for clinical use.
- Understanding p53's precise role in apoptosis is crucial for targeted cancer treatments.
Purpose of the Study:
- To identify novel regulators of p53-induced apoptosis.
- To elucidate the mechanism by which p53 triggers programmed cell death.
- To explore Sp1's role in mediating p53's apoptotic effects.
Main Methods:
- Integrated analysis of genome-wide short hairpin RNA screens.
- Gene expression data analysis.
- Investigated the co-binding of Sp1 and p53 to target genes.
Main Results:
- Sp1 is a critical modulator of p53-induced apoptosis.
- Sp1 is essential for p53-mediated transcriptional repression, not gene induction.
- p53-dependent apoptosis requires Sp1 co-binding to target genes.
- MDM2 regulates both Sp1 and p53, controlling Sp1 degradation.
Conclusions:
- Sp1 plays a vital role in p53-mediated apoptosis.
- A novel mechanism for controlling apoptosis via Sp1 regulation by MDM2 is identified.
- Findings offer insights for manipulating p53 responses using small molecules targeting Sp1.
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