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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
AP2alpha alters the transcriptional activity and stability of p53
P R Stabach1, M M Thiyagarajan, G W Woodfield
1Department of Surgery, Thomas Jefferson University, Philadelphia, PA, USA.
Abstract:
AP2alpha and p53 form nuclear complexes that establish a functional partnership, which regulates the expression of certain genes involved in cell growth and metastasis. The growth effects of AP2alpha are mediated through p21WAF1/CIP1 and the ability for AP2alpha to coactivate p21 requires p53. Herein, we have localized the AP2-binding region of p53 to amino acids 305-375. Analysis of 26 distinct p53 alleles established a correlation between AP2alpha binding and transcriptional coactivation. The L350P point mutation was the only nonbinding allele that retained normal transcriptional activity by reporter assay. Although both wild-type and L350P alleles facilitated binding of AP2alpha to the p21 promoter, the L350P allele was significantly reduced in its ability to induce the endogenous p21 gene, demonstrating a striking difference in activity comparing reporter assays with activation of endogenous p53 target genes. Interestingly, expression of AP2 in the absence of radiation repressed p53-mediated induction of p21 and this effect was explained by a reduction in p53 stability induced by AP2alpha overexpression. We conclude that AP2alpha has competing effects on p53 activity through coactivation and decreased stability. These findings may provide a mechanism to account for the discrepancies reported for the association between AP2 and p21 expression in tumor tissue.
Insights
AP2alpha and p53 protein partnership regulates cell growth genes. AP2alpha coactivates p21 expression via p53, but can also decrease p53 stability, impacting tumor tissue findings.
Area of Science:
- Molecular Biology
- Cancer Research
Background:
- AP2alpha and p53 form nuclear complexes regulating cell growth and metastasis.
- AP2alpha's growth effects are mediated through p21WAF1/CIP1, requiring p53 for coactivation.
Purpose of the Study:
- To investigate the functional partnership between AP2alpha and p53.
- To identify the p53 region responsible for AP2alpha binding and coactivation.
- To elucidate the competing effects of AP2alpha on p53 activity and p21 gene expression.
Main Methods:
- Localization of the AP2-binding region within p53 (amino acids 305-375).
- Analysis of 26 p53 alleles for binding and transcriptional coactivation.
- Reporter assays and analysis of endogenous p21 gene induction.
- Assessment of p53 stability in response to AP2alpha overexpression.
Main Results:
- A correlation was found between AP2alpha binding to p53 and transcriptional coactivation.
- The L350P mutation impaired AP2alpha binding but retained reporter activity, yet reduced endogenous p21 induction.
- AP2alpha overexpression repressed p53-mediated p21 induction by reducing p53 stability.
Conclusions:
- AP2alpha exhibits dual roles in modulating p53 activity: coactivation and decreased stability.
- These opposing effects may explain conflicting associations between AP2 and p21 expression in tumors.
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