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Updated: May 26, 2026

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Rapamycin impairs UV induction of mutant-p53 overexpressing cell clusters without affecting tumor onset
P Voskamp1, C A Bodmann, H G Rebel
1Department of Dermatology, Leiden University Medical Center, Leiden, The Netherlands. p.voskamp@gmail.com
Abstract:
Because of its antitumor effect, the immunosuppressant rapamycin holds great promise for organ transplant recipients in that it may lower their cancer risk. In a mouse model, we showed previously that rapamycin inhibits the outgrowth of primary skin carcinomas induced by UV radiation. However, the tumors that did grow out showed an altered p53 mutation spectrum. Here, we investigated whether this shift in p53 mutations already occurred in the smallest tumors, which were not affected in onset. We found that rapamycin did not alter the mutational spectrum in small tumors and in preceding microscopic clusters of cells expressing mutant-p53. However, rapamycin did reduce the number of these cell clusters. As this reduction did not affect tumor onset, we subsequently investigated whether rapamycin merely suppressed expression of mutated p53. This was not the case, as we could demonstrate that switching from a diet with rapamycin to one without, or vice versa, did not affect the number of existing mutant-p53 expressing cell clusters. Hence, rapamycin actually reduced the formation of mutant-p53 cell clusters. In wild-type and p53-mutant mice, we could not measure a significant enhancement of UV-induced apoptosis, but we did observe clear enhancement in human skin equivalents. This was associated with a clear suppression of HIF1α accumulation. Thus, we conclude that rapamycin reduces the formation of mutant-p53-expressing cell clusters without affecting tumor onset, suggesting that tumors grow out of a minor subset of cell clusters, the formation of which is not affected by rapamycin.
Insights
Rapamycin, an immunosuppressant, reduces the formation of early cancer cell clusters in mice, potentially lowering cancer risk for transplant patients. This effect occurs without impacting tumor onset or altering p53 mutations in small tumors.
Area of Science:
- Oncology
- Immunology
- Dermatology
Background:
- Rapamycin (an immunosuppressant) shows antitumor effects and may reduce cancer risk in organ transplant recipients.
- Previous studies indicated rapamycin inhibits UV-induced skin carcinoma outgrowth but alters p53 mutation spectra in developed tumors.
Purpose of the Study:
- To investigate if rapamycin alters p53 mutation spectra in early-stage tumors and microscopic cell clusters.
- To determine if rapamycin affects the formation or expression of mutant p53 in pre-cancerous lesions.
Main Methods:
- Analysis of p53 mutation spectra in small UV-induced skin tumors and microscopic cell clusters in mouse models.
- Dietary switching experiments to assess rapamycin's effect on existing mutant p53 cell clusters.
- Assessment of UV-induced apoptosis and HIF1α accumulation in mouse skin and human skin equivalents.
Main Results:
- Rapamycin did not alter the p53 mutation spectrum in small tumors or mutant p53-expressing cell clusters.
- Rapamycin significantly reduced the number of mutant p53-expressing cell clusters, but not tumor onset.
- Rapamycin suppressed HIF1α accumulation and enhanced UV-induced apoptosis in human skin equivalents, but not significantly in mouse models.
Conclusions:
- Rapamycin reduces the formation of mutant p53-expressing cell clusters, a key step in skin carcinogenesis.
- Tumor development appears to originate from a small subset of cell clusters whose formation is not influenced by rapamycin.
- These findings suggest a mechanism by which rapamycin may lower cancer risk without affecting initial tumor development rates.
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