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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Effects of TP53 mutational status on gene expression patterns across 10 human cancer types
Neha Parikh1, Susan Hilsenbeck, Chad J Creighton
1Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, TX, USA.
Abstract:
Mutations in the TP53 tumour suppressor gene occur in half of all human cancers, indicating its critical importance in inhibiting cancer development. Despite extensive studies, the mechanisms by which mutant p53 enhances tumour progression remain only partially understood. Here, using data from the Cancer Genome Atlas (TCGA), genomic and transcriptomic analyses were performed on 2256 tumours from 10 human cancer types. We show that tumours with TP53 mutations have altered gene expression profiles compared to tumours retaining two wild-type TP53 alleles. Among 113 known p53-up-regulated target genes identified from cell culture assays, 10 were consistently up-regulated in at least eight of 10 cancer types that retain both copies of wild-type TP53. RPS27L, CDKN1A (p21(CIP1)) and ZMAT3 were significantly up-regulated in all 10 cancer types retaining wild-type TP53. Using this p53-based expression analysis as a discovery tool, we used cell-based assays to identify five novel p53 target genes from genes consistently up-regulated in wild-type p53 cancers. Global gene expression analyses revealed that cell cycle regulatory genes and transcription factors E2F1, MYBL2 and FOXM1 were disproportionately up-regulated in many TP53 mutant cancer types. Finally, > 93% of tumours with a TP53 mutation exhibited greatly reduced wild-type p53 messenger expression, due to loss of heterozygosity or copy neutral loss of heterozygosity, supporting the concept of p53 as a recessive tumour suppressor. The data indicate that tumours with wild-type TP53 retain some aspects of p53-mediated growth inhibitory signalling through activation of p53 target genes and suppression of cell cycle regulatory genes.
Insights
Mutations in the TP53 gene impact cancer development. This study reveals how TP53 mutations alter gene expression, affecting tumor suppressor functions and cell cycle regulation in various cancers.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- The TP53 tumor suppressor gene is frequently mutated in human cancers.
- Understanding the mechanisms of mutant p53 in tumor progression is crucial.
- TP53 mutations are implicated in over half of all human cancers.
Purpose of the Study:
- To investigate the impact of TP53 mutations on gene expression profiles across diverse cancer types.
- To identify novel p53 target genes and understand their role in wild-type TP53 cancers.
- To elucidate the mechanisms of p53's tumor suppressive function.
Main Methods:
- Genomic and transcriptomic analyses of 2256 tumors from 10 cancer types using TCGA data.
- Analysis of known p53-up-regulated target genes.
- Cell-based assays to identify novel p53 target genes.
- Gene expression profiling to compare wild-type and mutant TP53 tumors.
Main Results:
- TP53 mutations significantly alter tumor gene expression compared to wild-type TP53.
- RPS27L, CDKN1A (p21(CIP1)), and ZMAT3 are consistently upregulated in wild-type TP53 cancers.
- Five novel p53 target genes were identified.
- Cell cycle regulators and transcription factors like E2F1, MYBL2, and FOXM1 are upregulated in TP53 mutant cancers.
- Over 93% of TP53 mutant tumors show reduced wild-type p53 expression, supporting its recessive tumor suppressor role.
Conclusions:
- Wild-type TP53 tumors retain p53-mediated growth inhibitory signaling.
- TP53 mutations disrupt these pathways, contributing to tumor progression.
- Gene expression analysis is a valuable tool for discovering p53 functions and targets.
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