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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Transactivation-deficient p73alpha (p73Deltaexon2) inhibits apoptosis and competes with p53
I Fillippovich1, N Sorokina, M Gatei
1Laboratory of Molecular Radiobiology, Institute of Biophysics, Russian Ministry of Health, Moscow, 123182, Russia.
Abstract:
p73 has recently been identified as a structural and functional homolog of the tumor suppressor protein p53. Overexpression of p53 activates transcription of p53 effector genes, causes growth inhibition and induced apoptosis. We describe here the effects of a tumor-derived truncated transcript of p73alpha (p73Deltaexon2) on p53 function and on cell death. This transcript, which lacks the acidic N-terminus corresponding to the transactivation domain of p53, was initially detected in a neuroblastoma cell line. Overexpression of p73Deltaexon2 partially protects lymphoblastoid cells against apoptosis induced by anti-Fas antibody or cisplatin. By cotransfecting p73Deltaexon2 with wild-type p53 in the p53 null line Saos 2, we found that this truncated transcript reduces the ability of wild-type p53 to promote apoptosis. This anti-apoptotic effect was also observed when p73Deltaexon2 was co-transfected with full-length p73 (p73alpha). This was further substantiated by suppression of p53 transactivation of the effector gene p21/Waf1 in p73Deltaexon2 transfected cells and by inhibition of expression of a reporter gene under the control of the p53 promoter. Thus, this truncated form of p73 can act as a dominant-negative agent towards transactivation by p53 and p73alpha, highlighting the potential implications of these findings for p53 signaling pathway. Furthermore, we demonstrate the existence of a p73Deltaexon2 transcript in a very significant proportion (46%) of breast cancer cell lines. However, a large spectrum of normal and malignant tissues need to be surveyed to determine whether this transdominant p73 variant occurs in a tumor-specific manner.
Insights
A truncated p73 transcript, p73Deltaexon2, inhibits the tumor suppressor protein p53
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Death Pathways
Background:
- p73 is a homolog of the tumor suppressor p53, involved in apoptosis and growth inhibition.
- Truncated transcripts of p73 may alter its function and impact cancer development.
Purpose of the Study:
- To investigate the effects of a tumor-derived truncated p73 transcript (p73Deltaexon2) on p53 function and apoptosis.
- To determine the prevalence of p73Deltaexon2 in cancer cell lines.
Main Methods:
- Overexpression of p73Deltaexon2 in lymphoblastoid and Saos 2 cells.
- Co-transfection experiments with wild-type p53 and full-length p73.
- Analysis of apoptosis induction by anti-Fas antibody and cisplatin.
- Assays for p53 transactivation of p21/Waf1 and p53 promoter activity.
Main Results:
- p73Deltaexon2 partially protected cells against apoptosis.
- This truncated transcript inhibited apoptosis induced by wild-type p53 and full-length p73.
- p73Deltaexon2 suppressed p53-mediated transactivation of p21/Waf1 and the p53 promoter.
- p73Deltaexon2 was detected in 46% of breast cancer cell lines.
Conclusions:
- The truncated p73Deltaexon2 acts as a dominant-negative inhibitor of p53 and p73alpha.
- These findings suggest potential implications for the p53 signaling pathway in cancer.
- Further studies are needed to determine if p73Deltaexon2 is tumor-specific.
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