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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Homogenous TP53mut-associated tumor biology across mutation and cancer types revealed by transcriptome analysis
Eva Romanovsky1, Klaus Kluck1, Iordanis Ourailidis1
1Institute of Pathology, Heidelberg University Hospital, 69120, Heidelberg, Germany.
Abstract:
TP53 is the most frequently mutated gene in human cancer. While no TP53-targeting drugs have been approved in the USA or Europe so far, preclinical and clinical studies are underway to investigate targeting of specific or all TP53 mutations, for example, by restoration of the functionality of mutated TP53 (TP53mut) or protecting wildtype TP53 (TP53wt) from negative regulation. We performed a comprehensive mRNA expression analysis in 24 cancer types of TCGA to extract (i) a consensus expression signature shared across TP53 mutation types and cancer types, (ii) differential gene expression patterns between tumors harboring different TP53 mutation types such as loss of function, gain of function or dominant-negative mutations, and (iii) cancer-type-specific patterns of gene expression and immune infiltration. Analysis of mutational hotspots revealed both similarities across cancer types and cancer type-specific hotspots. Underlying ubiquitous and cancer type-specific mutational processes with the associated mutational signatures contributed to explaining this observation. Virtually no genes were differentially expressed between tumors harboring different TP53 mutation types, while hundreds of genes were over- and underexpressed in TP53mut compared to TP53wt tumors. A consensus list included 178 genes that were overexpressed and 32 genes that were underexpressed in the TP53mut tumors of at least 16 of the investigated 24 cancer types. In an association analysis of immune infiltration with TP53 mutations in 32 cancer subtypes, decreased immune infiltration was observed in six subtypes, increased infiltration in two subtypes, a mixed pattern of decreased and increased immune cell populations in four subtypes, while immune infiltration was not associated with TP53 status in 20 subtypes. The analysis of a large cohort of human tumors complements results from experimental studies and supports the view that TP53 mutations should be further evaluated as predictive markers for immunotherapy and targeted therapies.
Insights
The TP53 gene is frequently mutated in cancer. This study analyzed gene expression in 24 cancer types, finding hundreds of genes altered in TP53-mutated tumors and exploring immune infiltration patterns, suggesting TP53 mutations as potential biomarkers for therapies.
Area of Science:
- Oncology
- Genomics
- Cancer Research
Background:
- TP53 is the most frequently mutated gene across human cancers.
- Targeting TP53 mutations is an active area of drug development, focusing on restoring function or protecting wild-type TP53.
- Understanding the molecular consequences of TP53 mutations is crucial for developing effective therapies.
Purpose of the Study:
- To perform a comprehensive mRNA expression analysis across 24 cancer types within The Cancer Genome Atlas (TCGA).
- To identify a consensus gene expression signature associated with TP53 mutations.
- To investigate differential gene expression patterns and immune infiltration related to various TP53 mutation types and cancer types.
Main Methods:
- Comprehensive mRNA expression analysis of 24 cancer types from TCGA.
- Identification of consensus and differential gene expression signatures.
- Association analysis of immune infiltration with TP53 mutation status across 32 cancer subtypes.
Main Results:
- Hundreds of genes were found to be overexpressed or underexpressed in TP53-mutated (TP53mut) versus wild-type TP53 (TP53wt) tumors.
- A consensus signature identified 178 overexpressed and 32 underexpressed genes in TP53mut tumors across at least 16 cancer types.
- Immune infiltration patterns varied significantly across cancer subtypes in relation to TP53 status, with associations found in 12 out of 32 subtypes.
Conclusions:
- TP53 mutations significantly alter the tumor transcriptome, with a conserved set of genes affected across many cancer types.
- TP53 mutation status shows complex associations with immune infiltration, suggesting context-specific effects.
- TP53 mutations hold potential as predictive biomarkers for immunotherapy and targeted cancer therapies.
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