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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Restoration of p53 function: a new therapeutic strategy to induce tumor regression?
Naiara Beraza1, Christian Trautwein
1Department of Internal Medicine III, University Hospital Aachen (RWTH), Aachen, Germany.
Abstract:
Although cancer arises from a combination of mutations in oncogenes and tumour suppressor genes, the extent to which tumour suppressor gene loss is required for maintaining established tumours is poorly understood. p53 is an important tumour suppressor that acts to restrict proliferation in response to DNA damage or deregulation of mitogenic oncogenes, by leading to the induction of various cell cycle checkpoints, apoptosis or cellular senescence. Consequently, p53 mutations increase cell proliferation and survival, and in some settings promote genomic instability and resistance to certain chemotherapies. To determine the consequences of reactivating the p53 pathway in tumours, we used RNA interference (RNAi) to conditionally regulate endogenous p53 expression in a mosaic mouse model of liver carcinoma. We show that even brief reactivation of endogenous p53 in p53-deficient tumours can produce complete tumour regressions. The primary response to p53 was not apoptosis, but instead involved the induction of a cellular senescence program that was associated with differentiation and the upregulation of inflammatory cytokines. This program, although producing only cell cycle arrest in vitro, also triggered an innate immune response that targeted the tumour cells in vivo, thereby contributing to tumour clearance. Our study indicates that p53 loss can be required for the maintenance of aggressive carcinomas, and illustrates how the cellular senescence program can act together with the innate immune system to potently limit tumour growth.
Insights
Reactivating the tumor suppressor p53 pathway in established liver carcinomas triggered cellular senescence and an immune response, leading to complete tumor regression. This highlights p53
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- The role of tumor suppressor gene loss in maintaining established cancers remains unclear.
- p53 is a critical tumor suppressor that restricts proliferation and induces cell cycle arrest, apoptosis, or senescence in response to cellular stress.
- p53 mutations promote cancer cell proliferation, survival, genomic instability, and chemoresistance.
Discussion:
- Conditional reactivation of endogenous p53 in p53-deficient liver carcinomas induced complete tumor regression.
- The primary mechanism was not apoptosis but the induction of cellular senescence, differentiation, and inflammatory cytokine upregulation.
- Cellular senescence, coupled with an innate immune response, effectively targeted and cleared tumor cells in vivo.
Key Insights:
- Loss of p53 function is essential for the maintenance of aggressive carcinomas.
- Reactivating p53 can trigger a potent anti-tumor response through senescence and immune activation.
- The cellular senescence program collaborates with the innate immune system to limit tumor growth.
Outlook:
- Therapeutic strategies targeting p53 reactivation and senescence induction hold promise for cancer treatment.
- Understanding the interplay between senescence and the immune system can reveal new avenues for cancer immunotherapy.
- Further research into modulating inflammatory cytokine responses in senescence could enhance anti-tumor immunity.
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