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Updated: Aug 13, 2026

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
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.
Abstract:
An unresolved issue regards the role of p73 and p63, the two homologs of the p53 oncosuppressor gene, in normal cells and in tumor development. Specific target genes for each protein need to be identified and characterized in order to understand the specific role of each protein in tumor initiation and progression as well as in oncosuppression and development. We tested whether p63 is implicated in transcriptional events related to sustaining cell proliferation by transactivation of antiapoptotic and cell survival target genes such as Adenosine Deaminase (ADA), an important gene involved in cell proliferation. We demonstrate that ADA is a direct target gene of p63 isoforms. In human keratinocytes, the rate of proliferation and the high level of ADA transcript diminished upon elimination of p63 by small interfering RNA. Reporter assays and chromatin immunoprecipitation experiments indicate a physical interaction of p63 with the two putative p53 binding sites we identified in the ADA gene. Moreover, in response to p53 stabilization and DeltaNp63 downregulation in normal keratinocytes after U.V. treatment, we found a change in the transcriptional pattern of the p53 family target genes, consistent with the different roles played by p53 and p63 in tumor suppression and cellular proliferation. In fact p53 upregulation determined an increase in p21, which in turn mediated the cell cycle arrest, while the downregulation of DeltaNp63 determined a marked decrease in ADA transcript. The experiments reported here support the hypothesis that TAp63 and DeltaNp63 might contribute to tumor genesis not exclusively by antagonizing p53, but by conferring a proliferative potential on cancer cells through the transactivation of target genes indispensable for cell division, such as the Adenosine Deaminase gene.
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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