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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Identification of the interleukin 4 receptor alpha gene as a direct target for p73
Yasushi Sasaki1, Hiroaki Mita, Minoru Toyota
1Department of Molecular Biology, Cancer Research Institute, Sapporo Medical University School of Medicine, Sapporo, Japan.
Abstract:
p73 has a high degree of structural homology to p53 and can activate transcription of p53-responsive genes. However, analysis of p73-deficient mice revealed a marked divergence in the physiological activities of p53 family genes and distinguishes p73 from p53. Mice deficient for p73 exhibit profound defects, including hippocampal dysgenesis, chronic infection, and inflammation, as well as abnormalities in pheromone sensory pathways. p73 plays important roles in neurogenesis, sensory pathways, and homeostatic regulation. Here, we found that the interleukin 4 receptor alpha (IL-4Ralpha) gene is up-regulated by p73 but not significantly by p53 in several human cancer cell lines. IL-4Ralphatranscription is also activated in response to cisplatin, a DNA-damaging agent known to induce p73. By using small interference RNA designed to target p73, we demonstrated that silencing endogenous p73 abrogates the induction of the IL-4Ralpha gene after cisplatin treatment. Furthermore, we identified a p73-binding site in the first intron of the IL-4Ralpha gene that can directly interact with the p73 protein in vivo. This p73-binding site consists of eight copies of a 10-bp consensus p53-binding motif and is a functional response element that is relatively specific for p73 among the p53 family. p73beta promoted localized nucleosomal acetylation through recruitment of coactivator p300, indicating that p73 regulates transcription of IL-4Ralpha through the unique p73-binding site. We also found that p73beta-transfected tumor cells are sensitive to IL-4-mediated apoptosis. Our data suggest that IL-4Ralpha could mediate, in part, certain immune responses and p73-dependent cell death.
Insights
The tumor suppressor p73 protein directly regulates the interleukin 4 receptor alpha (IL-4Ralpha) gene, impacting cell death and immune responses. This finding distinguishes p73
Area of Science:
- Molecular Biology
- Genetics
- Immunology
Background:
- p73 shares structural homology with p53 but exhibits distinct physiological roles.
- p73-deficient mice display significant developmental and functional defects.
Purpose of the Study:
- To investigate the differential transcriptional regulation of genes by p73 compared to p53.
- To identify novel p73 target genes and elucidate their functional significance.
Main Methods:
- Analysis of p73-deficient mice.
- Gene expression analysis in human cancer cell lines.
- Small interference RNA (siRNA) mediated gene silencing.
- Chromatin immunoprecipitation (ChIP) assays.
- Reporter gene assays.
Main Results:
- The interleukin 4 receptor alpha (IL-4Ralpha) gene is upregulated by p73, but not significantly by p53.
- IL-4Ralpha expression is induced by cisplatin, a DNA-damaging agent that activates p73.
- Silencing p73 abrogates cisplatin-induced IL-4Ralpha gene expression.
- A specific p73-binding site was identified in the IL-4Ralpha gene's first intron.
- p73beta recruits coactivator p300 to regulate IL-4Ralpha transcription.
- Tumor cells transfected with p73beta show sensitivity to IL-4-mediated apoptosis.
Conclusions:
- p73 plays a critical role in regulating IL-4Ralpha gene expression through a unique binding site.
- IL-4Ralpha may mediate p73-dependent immune responses and cell death.
- This study highlights functional divergence between p73 and p53 in gene regulation.