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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 leads to tumour regression in vivo
Andrea Ventura1, David G Kirsch, Margaret E McLaughlin
1Center for Cancer Research, Massachusetts Institute of Technology, Cambridge, Massachusetts 02142, USA.
Abstract:
Tumorigenesis is a multi-step process that requires activation of oncogenes and inactivation of tumour suppressor genes. Mouse models of human cancers have recently demonstrated that continuous expression of a dominantly acting oncogene (for example, Hras, Kras and Myc) is often required for tumour maintenance; this phenotype is referred to as oncogene addiction. This concept has received clinical validation by the development of active anticancer drugs that specifically inhibit the function of oncoproteins such as BCR-ABL, c-KIT and EGFR. Identifying additional gene mutations that are required for tumour maintenance may therefore yield clinically useful targets for new cancer therapies. Although loss of p53 function is a common feature of human cancers, it is not known whether sustained inactivation of this or other tumour suppressor pathways is required for tumour maintenance. To explore this issue, we developed a Cre-loxP-based strategy to temporally control tumour suppressor gene expression in vivo. Here we show that restoring endogenous p53 expression leads to regression of autochthonous lymphomas and sarcomas in mice without affecting normal tissues. The mechanism responsible for tumour regression is dependent on the tumour type, with the main consequence of p53 restoration being apoptosis in lymphomas and suppression of cell growth with features of cellular senescence in sarcomas. These results support efforts to treat human cancers by way of pharmacological reactivation of p53.
Insights
Restoring p53 tumor suppressor gene function in mice caused existing lymphomas and sarcomas to regress. This suggests targeting p53 reactivation could be a viable cancer therapy strategy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Tumorigenesis involves oncogene activation and tumor suppressor gene inactivation.
- Oncogene addiction, where tumors require continuous oncogene expression for maintenance, is a validated therapeutic target.
- The role of sustained tumor suppressor gene inactivation in tumor maintenance is unclear.
Purpose of the Study:
- To investigate if sustained inactivation of tumor suppressor pathways, specifically p53, is required for tumor maintenance.
- To explore the therapeutic potential of reactivating tumor suppressor genes in established cancers.
Main Methods:
- Utilized a Cre-loxP-based system for temporal control of tumor suppressor gene expression in mouse models.
- Developed mouse models with autochthonous lymphomas and sarcomas to study tumor regression.
Main Results:
- Restoration of endogenous p53 expression led to the regression of established lymphomas and sarcomas in mice.
- Normal tissues were unaffected by p53 restoration.
- Tumor regression mechanisms varied by tumor type: apoptosis in lymphomas and growth suppression with senescence in sarcomas.
Conclusions:
- Sustained p53 inactivation is not required for the maintenance of all tumors.
- Pharmacological reactivation of p53 holds promise as a therapeutic strategy for human cancers.
- Tumor-specific responses to p53 restoration highlight the complexity of cancer treatment.
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