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.

Cell Death Discovery
|April 14, 2023
PubMed

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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