Consequences of DJ-1 upregulation following p53 loss and cell transformation

S Vasseur1, S Afzal, R Tomasini

  • 1Institut National de la Santé et de la Recherche Médicale Unité 624, Marseille, France.

Oncogene
|July 5, 2011
PubMed

Insights

The tumor suppressor p53 regulates DJ-1 protein levels, preventing its accumulation. Loss of p53 enhances DJ-1, promoting AKT activation and oxidative stress during cell transformation.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cell Biology

Background:

  • p53 is a critical tumor suppressor involved in cell-cycle arrest, senescence, and apoptosis.
  • Mutations in the p53 gene are prevalent in human cancers, underscoring its role in tumor suppression.
  • Interactions between p53, IGF-1-AKT, and mTOR pathways are implicated in p53's tumor-suppressive functions.

Purpose of the Study:

  • To investigate the role of DJ-1, an oncogene promoting AKT-mediated cell survival, in the p53-AKT signaling axis.
  • To elucidate the regulatory relationship between p53 and DJ-1, particularly in the context of cell transformation and oxidative stress.

Main Methods:

  • Analysis of DJ-1 protein levels in relation to p53 status and cellular transformation.
  • Assessment of DJ-1's requirement for AKT activation in p53-deficient cells.
  • Investigation of DJ-1's role in p53 activation and reactive oxygen species (ROS) production under oxidative stress.

Main Results:

  • p53 negatively regulates DJ-1 protein accumulation; p53 loss leads to DJ-1 stabilization and increased expression, especially during cell transformation.
  • DJ-1 is essential for enhanced AKT activation in p53-deficient cells and is required for p53 activation following oxidative stress.
  • In p53-null cells, DJ-1 is stabilized by ROS and appears necessary for high intracellular ROS levels, suggesting a feedback loop.

Conclusions:

  • DJ-1 is a novel target of p53, with its expression tightly regulated by p53.
  • During cell transformation, DJ-1 plays a crucial role in the p53-regulated AKT pathway and p53-mediated oxidative-stress response.
  • These findings reveal a new layer of regulation involving DJ-1 in cancer development and response to cellular stress.

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