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Identification of Her-2/Neu CTL epitopes using double transgenic mice expressing HLA-A2.1 and human CD.8
J Lustgarten1, M Theobald, C Labadie
1Department of Immunology, The Scripps Research Institute, La Jolla, California 92037, U.S.A.
Abstract:
The Her-2/neu protooncogene is associated with malignant transformation and aggressive disease. Because of its overexpression in tumor cells and because it has been shown to be immunogenic, this protein represents an excellent target for T-cell immunotherapy. By identifying potential HLA-A2.1-binding peptides from the Her-2/neu sequence, peptides were selected as candidate T-cell epitopes. The immunogenicity of each peptide was evaluated by priming double transgenic mice expressing both the human (hu) CD8 and HLA-A2.1 molecules with synthetic peptides corresponding to these sequences. Because of the lack of interaction between murine CD8 and HLA-A2.1, expression of huCD8 on murine cells facilitates recognition of HLA molecules on human tumor cell lines. This led to the identification of two peptides that elicit an A2-restricted CTL response, one of which has not been previously identified. Both peptide-specific CTL populations were able to specifically lyse A2.1 and Her-2/neu expressing human tumor cells originating from a variety of tissues, demonstrating the utility of this murine model in identifying peptides presented by human cells. However, several Her-2/neu peptides previously reported to be immunogenic for human CTL were found not to be immunogenic in transgenic mice. The basis for these discrepancies is discussed.
Insights
Researchers identified two Her-2/neu peptides that trigger a T-cell response, aiding in the development of immunotherapy for HER2-positive cancers. This study highlights a novel mouse model for evaluating T-cell epitopes in cancer treatment.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- The Her-2/neu protooncogene is linked to aggressive cancers.
- Overexpressed Her-2/neu protein is a potential target for T-cell immunotherapy due to its immunogenicity.
Purpose of the Study:
- To identify and evaluate Her-2/neu-derived peptides as potential T-cell epitopes for immunotherapy.
- To assess the immunogenicity of these peptides in a humanized mouse model.
Main Methods:
- Identification of potential HLA-A2.1-binding peptides from the Her-2/neu sequence.
- Evaluation of peptide immunogenicity in double transgenic mice expressing human CD8 and HLA-A2.1.
- Assessment of cytotoxic T lymphocyte (CTL) response and tumor cell lysis.
Main Results:
- Two Her-2/neu peptides were identified that elicit an HLA-A2.1-restricted CTL response.
- These CTL populations specifically lysed Her-2/neu-expressing human tumor cells.
- Discrepancies were observed with previously reported immunogenic peptides in human CTL studies.
Conclusions:
- The developed murine model is effective for identifying Her-2/neu peptides presented by human cells for immunotherapy.
- The study identified novel T-cell epitopes for potential therapeutic strategies against Her-2/neu-positive cancers.
- Further investigation is needed to understand discrepancies in peptide immunogenicity between mouse models and human studies.