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Published on: February 9, 2021
Cyclooxygenase inhibitors differentially modulate p73 isoforms in neuroblastoma
L M S Lau1, J K Wolter, J T M L Lau
1Hospital for Sick Children, University of Toronto, Ontario, Canada.
Abstract:
p73 encodes multiple functionally distinct isoforms. Proapoptotic TAp73 isoforms contain a transactivation (TA) domain, and like p53, have tumor suppressor properties and are activated by chemotherapies to induce cell death. In contrast, antiapoptotic DeltaNp73 isoforms lack the TA domain and are dominant-negative inhibitors of p53 and TAp73. DeltaNp73 proteins are overexpressed in a variety of tumors including neuroblastoma. Thus, identification of drugs that upregulate TAp73 and/or downregulate DeltaNp73 represents a potential therapeutic strategy. Here, we report that cyclooxygenase (COX) inhibitors induce apoptosis independent of p53, and differentially modulate endogenous p73 isoforms in neuroblastoma and other tumors. COX inhibitor-mediated apoptosis is associated with the induction of TAp73beta and its target genes. COX inhibitors also downregulate the alternative-spliced DeltaNp73(AS) isoforms, Deltaexon2 and Deltaexon2/3. Furthermore, forced expression of DeltaNp73(AS) results in diminished apoptosis in response to the selective COX-2 inhibitor celecoxib. Celecoxib-mediated downregulation of DeltaNp73(AS) is associated with decreased E2F1 levels and diminished E2F1 activation of the p73 promoter. These results provide the first evidence that COX inhibitors differentially modulate p73 isoforms leading to enhanced apoptosis, and support the potential use of COX inhibitors as novel regulators of p73 to enhance chemosensitivity in tumors with deregulated E2F1 and in those with wild-type (wt) or mutant p53.
Insights
Cyclooxygenase (COX) inhibitors promote cancer cell death by increasing proapoptotic TAp73 and decreasing antiapoptotic DeltaNp73 isoforms. These findings support COX inhibitors as potential cancer therapeutics, especially for tumors with deregulated E2F1.
Area of Science:
- Molecular Biology
- Oncology
- Pharmacology
Background:
- The p73 gene produces distinct isoforms: proapoptotic TAp73 and antiapoptotic DeltaNp73.
- DeltaNp73 proteins are overexpressed in tumors like neuroblastoma, inhibiting p53 and TAp73.
- Targeting p73 isoforms presents a therapeutic strategy for cancer treatment.
Purpose of the Study:
- To investigate the effect of cyclooxygenase (COX) inhibitors on p73 isoforms in cancer.
- To determine if COX inhibitors can be used to modulate p73 for enhanced apoptosis.
Main Methods:
- Treatment of neuroblastoma and other tumor cells with COX inhibitors.
- Analysis of endogenous p73 isoform expression (TAp73beta, DeltaNp73(AS)).
- Assessment of apoptosis induction and E2F1 activity.
- Studies involving forced expression of DeltaNp73(AS) isoforms.
Main Results:
- COX inhibitors induced apoptosis independently of p53, upregulating TAp73beta and its target genes.
- COX inhibitors downregulated alternative-spliced DeltaNp73(AS) isoforms (Deltaexon2, Deltaexon2/3).
- Overexpression of DeltaNp73(AS) reduced apoptosis induced by the COX-2 inhibitor celecoxib.
- Celecoxib decreased E2F1 levels, impacting p73 promoter activation.
Conclusions:
- COX inhibitors differentially modulate p73 isoforms, enhancing apoptosis in cancer cells.
- These findings suggest COX inhibitors as novel regulators of p73 for improved chemosensitivity.
- Potential application in tumors with deregulated E2F1 or wild-type/mutant p53.
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