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Updated: May 10, 2026

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
More targets, more pathways and more clues for mutant p53
S Garritano1, A Inga, F Gemignani
1Department of Biology, University of Pisa, Pisa, Italy.
Abstract:
Mutations in the transcription factor p53 are among the most common genetic alterations in human cancer, and missense p53 mutations in cancer cells can lead to aggressive phenotypes. So far, only few studies investigated transcriptional reprogramming under mutant p53 expression as a means to identify deregulated targets and pathways. A review of the literature was carried out focusing on mutant p53-dependent transcriptome changes with the aims of (i) verifying whether different p53 mutations can be equivalent for their effects, or whether there is a mutation-specific transcriptional reprogramming of target genes, (ii) understanding what is the main mechanism at the basis of upregulation or downregulation of gene expression under the p53 mutant background, (iii) identifying novel candidate target genes of WT and/or mutant p53 and (iv) defining cellular pathways affected by the mutant p53-dependent gene expression reprogramming. Nearly 600 genes were consistently found upregulated or downregulated upon ectopic expression of mutant p53, regardless of the specific p53 mutation studied. Promoter analysis and the use of ChIP-seq data indicate that, for most genes, the expression changes could be ascribed to a loss both of WT p53 transcriptional activation and repressor functions. Pathway analysis indicated changes in the metabolism/catabolism of amino acids such as aspartate, glutamate, arginine and proline. Novel p53 candidate target genes were also identified, including ARID3B, ARNT2, CLMN, FADS1, FTH1, KPNA2, LPHN2, PARD6B, PDE4C, PIAS2, PRPF40A, PYGL and RHOBTB2, involved in the metabolism, xenobiotic responses and cell differentiation.
Insights
Mutant p53 (a key cancer gene) alters gene expression similarly across different mutations, mainly by losing normal functions. This impacts amino acid metabolism and identifies new cancer-related genes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Mutations in the p53 transcription factor are frequent in human cancers, often leading to aggressive disease.
- Understanding how mutant p53 affects gene expression is crucial for identifying therapeutic targets.
Purpose of the Study:
- To review literature on mutant p53-driven transcriptome changes.
- To determine if p53 mutations have mutation-specific effects on gene reprogramming.
- To identify mechanisms, novel target genes, and affected cellular pathways.
Main Methods:
- Literature review focusing on mutant p53-dependent transcriptome changes.
- Analysis of gene expression data, promoter regions, and ChIP-seq data.
- Pathway enrichment analysis.
Main Results:
- Nearly 600 genes showed consistent up/downregulation with mutant p53 expression, irrespective of the specific mutation.
- Expression changes are largely due to the loss of both wild-type p53's activation and repressor functions.
- Affected pathways include amino acid metabolism (aspartate, glutamate, arginine, proline).
Conclusions:
- Transcriptional reprogramming by mutant p53 is largely mutation-independent.
- Loss of wild-type p53 functions explains most observed gene expression changes.
- Novel candidate target genes involved in metabolism, xenobiotic responses, and cell differentiation were identified.
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