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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
The mutational status of p53 can influence its recognition by human T-cells
Katerina Shamalov1, Shlomo N Levy1, Miryam Horovitz-Fried1
1The Laboratory of Tumor Immunology and Immunotherapy, The Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan, Israel.
Abstract:
p53 was reported to be an attractive immunotherapy target because it is mutated in approximately half of human cancers, resulting in its inactivation and often accumulation in tumor cells. Peptides derived from p53 are presented by class I MHC molecules and may act as tumor-associated epitopes which could be targeted by p53-specific T cells. Interestingly, it was recently shown that there is a lack of significant correlation between p53 expression levels in tumors and their recognition by p53-TCR transduced T cells. To better understand the influence of the mutational status of p53 on its presentation by the MHC system and on T cell antitumor reactivity, we generated several mutant p53 constructs and expressed them in HLA-A2+/p53- cells. Upon co-culture with p53-specific T cells, we measured the specific recognition of p53-expressing target cells by means of cytokine secretion, marker upregulation and cytotoxicity, and in parallel determined p53 expression levels by intracellular staining. We also examined the relevance of antigen presentation components on p53 recognition and the impact of mutant p53 expression on cell-cycle dynamics. Our results show that selected p53 mutations altering protein stability can modulate p53 presentation to T cells, leading to a differential immune reactivity inversely correlated with measured p53 protein levels. Thus, p53 may behave differently than other classical tumor antigens and its mutational status should therefore be taken into account when elaborating immunotherapy treatments of cancer patients targeting p53.
Insights
Mutant p53 protein stability affects its presentation to T cells, influencing cancer immunotherapy. This differential immune reactivity, inversely correlated with p53 levels, highlights the importance of mutational status in p53-targeted therapies.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- The tumor suppressor protein p53 is frequently mutated in human cancers, making it a potential target for immunotherapy.
- p53-derived peptides presented by MHC class I molecules can serve as tumor-associated epitopes for T cell recognition.
Purpose of the Study:
- To investigate how p53's mutational status influences its presentation by the MHC system and subsequent T cell antitumor responses.
- To understand the impact of mutant p53 expression on antigen presentation and cell-cycle dynamics.
Main Methods:
- Generation and expression of various mutant p53 constructs in HLA-A2+/p53- cells.
- Co-culture with p53-specific T cells to assess recognition via cytokine secretion, marker upregulation, and cytotoxicity.
- Intracellular staining to determine p53 expression levels and analysis of antigen presentation components.
Main Results:
- Specific p53 mutations that alter protein stability modulate p53 presentation to T cells.
- This modulation leads to differential T cell immune reactivity that is inversely correlated with p53 protein levels.
- Mutant p53 expression impacts cell-cycle dynamics.
Conclusions:
- p53's behavior as an immunotherapy target differs from classical tumor antigens due to its complex mutational landscape.
- The mutational status of p53 is a critical factor to consider when designing p53-targeted cancer immunotherapies.
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