Connecting p63 to cellular proliferation: the example of the adenosine deaminase target gene

Elisabetta Sbisà1, Giuseppe Mastropasqua, Kostantinos Lefkimmiatis

  • 1Istituto Tecnologie Biomediche CNR Sede di Bari di Bioinformatica e Genomica, Bari, Italy.

Insights

The p63 protein directly targets the Adenosine Deaminase (ADA) gene, promoting cell proliferation. Downregulation of p63 reduces ADA levels and cell growth, highlighting p63

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Cell Biology

Background:

  • The roles of p73 and p63, homologs of the p53 tumor suppressor, in normal cells and cancer remain unclear.
  • Identifying specific target genes is crucial for understanding their functions in tumor initiation, progression, and development.

Purpose of the Study:

  • To investigate the implication of p63 in sustaining cell proliferation through the transactivation of antiapoptotic and cell survival genes.
  • To determine if Adenosine Deaminase (ADA) is a direct target gene of p63 isoforms.

Main Methods:

  • Small interfering RNA (siRNA) to eliminate p63 in human keratinocytes.
  • Reporter assays and chromatin immunoprecipitation (ChIP) to assess p63 binding to the ADA gene.
  • Analysis of p53 family target gene expression following UV treatment.

Main Results:

  • ADA was identified as a direct target gene of p63 isoforms.
  • Elimination of p63 reduced human keratinocyte proliferation and ADA transcript levels.
  • p63 physically interacted with putative p53 binding sites in the ADA gene.
  • UV treatment led to p53 stabilization, p21 upregulation, cell cycle arrest, and DeltaNp63 downregulation, resulting in decreased ADA transcript levels.

Conclusions:

  • TAp63 and DeltaNp63 may contribute to tumor genesis by conferring proliferative potential to cancer cells.
  • This proliferative potential is achieved through the transactivation of essential cell division genes like Adenosine Deaminase (ADA).
  • p63's role in tumor development may involve promoting proliferation rather than solely antagonizing p53.

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