How the nucleolar sequestration of p53 protein or its interplayers contributes to its (re)-activation

Józefa Wsierska-Gadek1, Marcel Horky

  • 1Cell Cycle Regulation Group, Institute of Cancer Research, Faculty of Medicine, University of Vienna, Vienna, Austria. Jozefa.Antonia.Gadek-Wesierski@univie.ac.at

Insights

Chemotherapy with cisplatin reactivates the tumor suppressor p53 in cervical cancer cells by reducing viral E6 protein expression. This leads to increased p53 levels and accumulation in the nucleolus, restoring its function.

Area of Science:

  • Oncology
  • Molecular Biology
  • Virology

Background:

  • The tumor suppressor p53 protein is tightly regulated and typically at low levels in normal cells.
  • Mdm2 and p14(ARF) are key regulators of p53 stability, with nucleolar relocation influencing its steady-state.
  • Human papillomaviruses (HPVs) E6 protein hijacks cellular machinery (E6-AP) to degrade p53 in cervical carcinomas.

Purpose of the Study:

  • To investigate if chemotherapy can restore p53 protein activity in HeLa cells, which express HPV E6.
  • To determine the effect of cisplatin treatment on p53 levels and localization in the presence of E6 activity.

Main Methods:

  • HeLa cells were treated with cisplatin (CP).
  • Cellular p53 levels and localization were analyzed post-treatment.
  • Expression levels of viral E6 protein were monitored during CP therapy.

Main Results:

  • Cisplatin treatment led to a significant increase in cellular p53 levels.
  • Accumulation of p53 protein was observed preferentially in the nucleoli.
  • A marked reduction in E6 protein expression occurred six hours after CP application, preceding p53 restoration.

Conclusions:

  • Cisplatin therapy can restore p53 expression in cervical cancer cells despite HPV E6 activity.
  • The mechanism involves the repression of viral E6 protein by cisplatin, leading to p53 stabilization and nucleolar accumulation.

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