A mutant p53 tumor suppressor protein is a target for peptide-induced CD8+ cytotoxic T-cells
M Yanuck1, D P Carbone, C D Pendleton
1Molecular Immunogenetics and Vaccine Research Section, National Cancer Institute, NIH, Bethesda, Maryland 20892.
Abstract:
Cytotoxic T-lymphocytes (CTL) recognize processed peptide fragments of any endogenous protein, after these peptides are carried to the cell surface by class I major histocompatibility molecules. Thus, a tumor antigen does not have to be expressed as an intact protein on the cell surface to be recognizable by CTL. However, mutant oncogene products have not yet been shown to be targets of CD8+ CTL. Here, we generate p53-specific CD8+ CTL by immunizing BALB/c mice with spleen cells pulsed with a peptide, corresponding to a 21-amino acid sequence encompassing a point mutation (135 Cys to Tyr) in the mutant p53 gene product from a human lung carcinoma. The mutation created a new Kd class I molecule binding motif sequence, and the determinant recognized was mapped to this motif and presented by the Kd class I molecule. The wild type peptide, without the mutation, was not recognized. Importantly, the CTL killed specifically BALB/c fibroblasts transfected with the mutant p53 gene and endogenously expressing the mutant protein, but not control fibroblasts or ones transfected with a different human mutant p53 gene. Thus, endogenously synthesized mutant p53, at levels found in tumors, can render cells targets for specific CTL, and these CTL can be generated by peptide immunization. These findings point the way toward an approach to selective immunotherapy against tumors.
Insights
Researchers generated mutant p53-specific CD8+ cytotoxic T-lymphocytes (CTL) by peptide immunization. These CTL specifically target tumor cells expressing endogenous mutant p53, paving the way for targeted cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Cytotoxic T-lymphocytes (CTL) recognize endogenous proteins presented by MHC class I molecules.
- Mutant oncogene products, such as mutated p53, have not been established as targets for CD8+ CTL.
Purpose of the Study:
- To generate p53-specific CD8+ CTL against a mutated p53 oncogene product.
- To investigate if endogenously expressed mutant p53 can be recognized by CTL.
Main Methods:
- Immunization of BALB/c mice with spleen cells pulsed with a mutant p53-derived peptide.
- Mapping the CTL determinant to a novel Kd class I molecule binding motif created by the mutation.
- Assessing CTL killing of fibroblasts expressing endogenous mutant p53.
Main Results:
- Generation of p53-specific CD8+ CTL recognizing a specific point mutation (135 Cys to Tyr) in p53.
- The wild-type peptide did not elicit a response.
- CTL specifically killed tumor cells expressing the endogenous mutant p53, but not control cells or cells with different p53 mutations.
Conclusions:
- Endogenously synthesized mutant p53 can be recognized by CTL at tumor-relevant expression levels.
- Peptide immunization can generate specific CTL against mutant p53.
- These findings support a strategy for selective immunotherapy targeting tumors expressing mutant p53.
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