Distinct functions of wild-type and R273H mutant Δ133p53α differentially regulate glioblastoma aggressiveness and

Research Square
|November 21, 2023
PubMed

Insights

Mutant p53 isoforms drive cancer by activating the IL4I1/IDO1/AHR pathway, promoting glioblastoma growth and invasion. This pathway offers a potential therapeutic target for TP53 mutant cancers.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • Mutations in TP53 are common in cancers, yet their effects on p53 isoforms' activities are poorly understood.
  • p53 isoforms, including Δ133p53α, play critical roles in cellular processes, and their dysregulation by mutations can impact cancer development.

Approach:

  • Investigated the functional consequences of wild-type (WT) and mutant Δ133p53α (R273H) on cancer cell behavior and gene expression.
  • Analyzed the impact of these isoforms on apoptosis, senescence, and the expression of IL4I1, IDO1, and AHR.
  • Utilized TCGA data to correlate gene expression with glioblastoma (GBM) and lower-grade glioma (LGG) patient survival.

Key Points:

  • A novel mutant Δ133p53α-specific pathway was identified, increasing IL4I1 and IDO1 expression and activating the tumor-promoting AHR.
  • Mutant Δ133p53α R273H enhances glioblastoma proliferation and invasion, reduces apoptosis, and impairs genomic stability.
  • Differential regulation of senescence by WT and mutant Δ133p53α was observed, with distinct responses to temozolomide and radiation.

Conclusions:

  • The R273H mutation reorients Δ133p53α activity towards carcinogenesis, activating the oncogenic IL4I1/IDO1/AHR pathway.
  • Elevated IL4I1, IDO1, and AHR expression correlates with poorer survival in GBM and LGG patients.
  • This pathway represents a potential prognostic marker and therapeutic target in GBM, suggesting combination therapies.

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