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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Immunomodulatory Function of the Tumor Suppressor p53 in Host Immune Response and the Tumor Microenvironment
1Department of Biochemistry and Molecular Biology, Cancer Immunology, Inflammation & Tolerance Program, Georgia Cancer Center, Augusta University, Augusta, GA 30912, USA. ycui@augusta.edu.
Abstract:
The tumor suppressor p53 is the most frequently mutated gene in human cancers. Most of the mutations are missense leading to loss of p53 function in inducing apoptosis and senescence. In addition to these autonomous effects of p53 inactivation/dysfunction on tumorigenesis, compelling evidence suggests that p53 mutation/inactivation also leads to gain-of-function or activation of non-autonomous pathways, which either directly or indirectly promote tumorigenesis. Experimental and clinical results suggest that p53 dysfunction fuels pro-tumor inflammation and serves as an immunological gain-of-function driver of tumorigenesis via skewing immune landscape of the tumor microenvironment (TME). It is now increasingly appreciated that p53 dysfunction in various cellular compartments of the TME leads to immunosuppression and immune evasion. Although our understanding of the cellular and molecular processes that link p53 activity to host immune regulation is still incomplete, it is clear that activating/reactivating the p53 pathway in the TME also represents a compelling immunological strategy to reverse immunosuppression and enhance antitumor immunity. Here, we review our current understanding of the potential cellular and molecular mechanisms by which p53 participates in immune regulation and discuss how targeting the p53 pathway can be exploited to alter the immunological landscape of tumors for maximizing therapeutic outcome.
Insights
The tumor suppressor p53 (also known as TP53) is frequently mutated in cancers, promoting tumor growth by suppressing immune responses within the tumor microenvironment. Reactivating p53 offers a promising strategy to enhance anti-tumor immunity.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- The tumor suppressor p53 is the most frequently mutated gene in human cancers, with mutations often leading to loss of its tumor-suppressive functions like apoptosis induction.
- p53 inactivation/dysfunction not only has autonomous effects on tumorigenesis but also activates non-autonomous pathways that promote cancer progression.
Purpose of the Study:
- To review the current understanding of p53's role in immune regulation within the tumor microenvironment (TME).
- To discuss the potential of targeting the p53 pathway to reverse immunosuppression and enhance anti-tumor immunity for improved therapeutic outcomes.
Main Methods:
- Literature review of experimental and clinical studies.
- Analysis of cellular and molecular mechanisms linking p53 activity to immune regulation.
Main Results:
- p53 dysfunction fuels pro-tumor inflammation and acts as an immunological gain-of-function driver by altering the TME's immune landscape.
- p53 dysfunction in the TME contributes to immunosuppression and immune evasion.
- Activating or reactivating the p53 pathway in the TME can reverse immunosuppression and boost anti-tumor immunity.
Conclusions:
- p53 plays a critical role in regulating the immune response within the TME.
- Targeting the p53 pathway represents a viable immunological strategy to enhance anti-tumor immunity and improve cancer treatment efficacy.
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