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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Identification of a tumor-derived p53 mutant with novel transactivating selectivity
1The Fels Institute for Cancer Research and Molecular Biology, Temple University School of Medicine, 3307 N. Broad Street, Philadelphia, Pennsylvania, PA 19140, USA.
Abstract:
MDM2 is a p53-responsive molecule that when overexpressed, can alter growth control pathways via p53-dependent and independent mechanisms. We have identified a mutant p53 containing line that expresses high levels of transcripts that are regulated by the p53-responsive promoter of the MDM2 gene. Analysis of cloned product obtained from these tumor cells revealed that they harbor a mutant p53 protein (possessing an Arg to Gln substitution at codon 213) that is a potent transactivator of MDM2 expression. Consistent with this activity, the R213Q mutant was found to have the ability to interact with DNA sequences located within the MDM2 promoter. In contrast to previously described tumor-derived p53 mutants which retain MDM2 transactivation function and possess partial growth suppressive activity, the R213Q mutant is severely compromised in its ability to induce p53-regulated transcripts that encode for proteins involved in cell-cycle arrest and apoptosis. The R213Q mutant can also be expressed at high levels in stably transfected cells and cells that harbor this mutant possess elevated levels of MDM2 protein. The R213Q mutant was also found to be able to up-regulate MDM2 during a genotoxic stress response. R213Q is the first described tumor-derived p53 mutant that is deficient at up-regulating both cell cycle arrest and apoptotic factors, but is highly proficient at inducing the growth-promoting molecule MDM2.
Insights
A novel mutant p53 protein (R213Q) strongly activates MDM2, a growth-promoting molecule. This mutant impairs cell cycle arrest and apoptosis, unlike other tumor-derived p53 variants.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- MDM2 overexpression disrupts cellular growth control via p53-dependent and independent pathways.
- Mutant p53 proteins can alter MDM2 regulation, impacting tumor development.
Purpose of the Study:
- To characterize a novel tumor-derived mutant p53 (R213Q) and its effect on MDM2 expression and function.
- To investigate the R213Q mutant's ability to regulate cell cycle arrest and apoptosis.
Main Methods:
- Analysis of cloned tumor cell products expressing mutant p53.
- Assessing R213Q mutant's transactivation of the MDM2 promoter.
- Evaluating R213Q mutant's interaction with DNA and its effect on p53-regulated transcripts.
Main Results:
- The R213Q mutant p53 is a potent transactivator of MDM2, interacting with its promoter.
- R213Q mutant shows severely compromised ability to induce transcripts for cell-cycle arrest and apoptosis.
- Cells expressing R213Q exhibit elevated MDM2 levels, even under genotoxic stress.
Conclusions:
- R213Q is the first described tumor-derived p53 mutant deficient in inducing cell cycle arrest and apoptosis.
- R213Q proficiently induces MDM2, a growth-promoting molecule, suggesting a unique role in tumorigenesis.
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