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Analysis of Apoptosis in Zebrafish Embryos by Whole-mount Immunofluorescence to Detect Activated Caspase 3
Published on: December 20, 2013
Inhibition of p73 function by Pifithrin-alpha as revealed by studies in zebrafish embryos
William Davidson1, Qing Ren, Gabor Kari
1Department of Radiation Oncology, Thomas Jefferson University, Philadelphia, PA 19107, USA. william.davidson@mail.tju.edu
Abstract:
The p53 family of proteins contains two members that have been implicated in sensitization of cells and organisms to genotoxic stress, i.e., p53 itself and p73. In vitro, lack of either p53 or p73 can protect certain cell types in the adult organism against death upon exposure to DNA damaging agents. The present study was designed to assess the relative contribution of p53 to radiation resistance of an emerging vertebrate model organism, i.e., zebrafish embryos. Consistent with previous reports, suppressing p53 protein expression using antisense morpholino oligonucleotides (MOs) increased survival and reduced gross morphological alterations in zebrafish embryos exposed to ionizing radiation. By contrast, a pharmacological inhibitor of p53 function [Pifithrin-alpha(PFTalpha)] caused developmental abnormalities affecting the head, brain, eyes and kidney function and did not protect against lethal effects of ionizing radiation when administered at 3 hours post fertilization (hpf). The phenotypic abnormalities associated with PFTalpha treatment were similar to those caused by antisense MO knock down (kd) used to reduce p73 expression. PFTalpha also inhibited p73-dependent transcription of a reporter gene construct containing canonical p53-responsive promoter sequences. Notably, when administered at later stages of development (23 hpf), PFTalpha did not cause overt developmental defects but exerted radioprotective effects in zebrafish embryos. In summary, this study highlights off-target effects of the pharmacological p53 inhibitor PFTalpha related to inhibition of p73 function and essential roles of p73 at early but not later stages of zebrafish development.
Insights
The p53 protein helps zebrafish embryos survive radiation, but the drug Pifithrin-alpha has off-target effects, inhibiting p73 and impacting development.
Area of Science:
- Developmental Biology
- Molecular Biology
- Radiation Biology
Background:
- The p53 protein family, including p53 and p73, plays a role in cellular responses to genotoxic stress.
- Both p53 and p73 can influence cell death upon exposure to DNA damaging agents.
- Zebrafish embryos serve as a vertebrate model to study radiation resistance.
Purpose of the Study:
- To investigate the role of p53 in radiation resistance in zebrafish embryos.
- To assess the effects of the p53 inhibitor Pifithrin-alpha (PFTalpha) on zebrafish development and radiation survival.
Main Methods:
- Suppression of p53 protein expression using antisense morpholino oligonucleotides (MOs).
- Administration of the pharmacological p53 inhibitor Pifithrin-alpha (PFTalpha) at different developmental stages.
- Assessment of survival rates and morphological alterations in response to ionizing radiation.
- Evaluation of p73-dependent transcription using a reporter gene assay.
Main Results:
- Antisense MO-mediated suppression of p53 increased zebrafish embryo survival and reduced radiation-induced morphological defects.
- PFTalpha treatment at 3 hours post fertilization (hpf) caused developmental abnormalities and did not protect against radiation.
- PFTalpha inhibited p73-dependent transcription, suggesting off-target effects.
- PFTalpha administration at later stages (23 hpf) did not cause developmental defects but conferred radioprotection.
Conclusions:
- The study highlights potential off-target effects of PFTalpha, specifically the inhibition of p73 function.
- p73 plays essential roles in early zebrafish development.
- p53 contributes to radiation resistance in zebrafish embryos, while p73's role is stage-dependent.

