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Updated: May 2, 2026

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Endogenous c-Myc is essential for p53-induced apoptosis in response to DNA damage in vivo
T J Phesse1, K B Myant2, A M Cole2
11] School of Biosciences, University of Cardiff.CF10 3US, Cardiff, UK [2] Ludwig Institute for Cancer Research, Melbourne, Australia [3] The Walter and Eliza Hall Institute for Medical Research, Melbourne, Australia [4] Department of Medical Biology, University of Melbourne, Melbourne, Australia.
Abstract:
Recent studies have suggested that C-MYC may be an excellent therapeutic cancer target and a number of new agents targeting C-MYC are in preclinical development. Given most therapeutic regimes would combine C-MYC inhibition with genotoxic damage, it is important to assess the importance of C-MYC function for DNA damage signalling in vivo. In this study, we have conditionally deleted the c-Myc gene in the adult murine intestine and investigated the apoptotic response of intestinal enterocytes to DNA damage. Remarkably, c-Myc deletion completely abrogated the immediate wave of apoptosis following both ionizing irradiation and cisplatin treatment, recapitulating the phenotype of p53 deficiency in the intestine. Consistent with this, c-Myc-deficient intestinal enterocytes did not upregulate p53. Mechanistically, this was linked to an upregulation of the E3 Ubiquitin ligase Mdm2, which targets p53 for degradation in c-Myc-deficient intestinal enterocytes. Further, low level overexpression of c-Myc, which does not impact on basal levels of apoptosis, elicited sustained apoptosis in response to DNA damage, suggesting c-Myc activity acts as a crucial cell survival rheostat following DNA damage. We also identify the importance of MYC during DNA damage-induced apoptosis in several other tissues, including the thymus and spleen, using systemic deletion of c-Myc throughout the adult mouse. Together, we have elucidated for the first time in vivo an essential role for endogenous c-Myc in signalling DNA damage-induced apoptosis through the control of the p53 tumour suppressor protein.
Insights
The c-Myc protein is essential for initiating apoptosis in response to DNA damage. Its absence prevents cell death after genotoxic stress, highlighting c-Myc as a key regulator in DNA damage signaling.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- C-MYC is a promising cancer therapeutic target.
- Combining C-MYC inhibition with genotoxic damage is a common therapeutic strategy.
- Understanding c-MYC's role in DNA damage signaling is crucial for effective cancer treatment.
Purpose of the Study:
- To investigate the role of c-Myc in DNA damage-induced apoptosis in vivo.
- To determine if c-Myc is necessary for the apoptotic response to genotoxic agents.
- To elucidate the mechanism by which c-Myc influences DNA damage signaling.
Main Methods:
- Conditional deletion of the c-Myc gene in adult murine intestine.
- Assessment of intestinal enterocyte apoptosis following ionizing irradiation and cisplatin treatment.
- Analysis of p53 and Mdm2 expression in c-Myc-deficient cells.
Main Results:
- c-Myc deletion abrogated apoptosis in response to ionizing irradiation and cisplatin.
- c-Myc-deficient intestinal enterocytes failed to upregulate p53.
- Mdm2 upregulation in c-Myc-deficient cells led to p53 degradation.
- c-Myc overexpression enhanced apoptosis following DNA damage.
- c-Myc deletion also impacted apoptosis in the thymus and spleen.
Conclusions:
- Endogenous c-Myc is essential for in vivo DNA damage-induced apoptosis signaling.
- c-Myc controls apoptosis by regulating the p53 tumor suppressor protein.
- c-Myc acts as a critical cell survival rheostat in response to DNA damage.
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