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Tailoring In Vivo Cytotoxicity Assays to Study Immunodominance in Tumor-specific CD8+ T Cell Responses
Published on: May 6, 2019
Identification of a human cyclin D1-derived peptide that induces human cytotoxic CD4 T cells
Tao Dao1, Tatyana Korontsvit, Victoria Zakhaleva
1Molecular Pharmacology and Chemistry Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
Abstract:
Cyclin D1 is over-expressed in various human tumors and therefore can be a potential oncogenic target antigen. However, only a limited number of T cell epitopes has been characterized. We aimed at identifying human cyclin D1-derived peptides that include both CD4 and CD8 T cell epitopes and to test if such multi-epitope peptides could yield improved cytotoxic CD8 T cell responses as well as cytotoxic CD4 T cells. Five HLA-DR.B1-binding peptides containing multiple overlapping CD4 epitopes and HLA-A0201-restricted CD8 T cell epitopes were predicted by computer algorithms. Immunogenicity of the synthetic peptides was assessed by stimulating T cells from healthy donors in vitro and the epitope recognition was measured by IFN-gamma ELISPOT and (51)Chromium release assays. A HLA-DR.B1 peptide, designed "DR-1", in which a HLA-A0201-binding epitopes (D1-1) was imbedded, induced CD3 T cell responses against both DR-1 and D1-1 peptides in IFN-gamma ELISPOT assay. This suggested processing of the shorter D1-1 epitope from the DR-1 sequence. However, only DR-1-stimulated CD4 or CD3 T cells possessed cytotoxicity against peptide-pulsed autologous DCs and a cancer cell line, that expresses a high level of cyclin D1. Monoclonal antibody to HLA-DR abrogated the epitope-specific responses of both CD3 and CD4 T cells, demonstrating class II-mediated killing. Our studies suggest a possible role of CD4 T cells in anti-tumor immunity as cytotoxic effectors against HLA-DR expressing cancers and provide a rationale for designing peptide vaccines that include CD4 epitopes.
Insights
Researchers identified multi-epitope peptides from cyclin D1 that elicit potent CD4 T cell anti-tumor responses. These findings support CD4 T cells as cytotoxic effectors against cancers expressing HLA-DR, informing new peptide vaccine designs.
Area of Science:
- Immunology
- Oncology
- Vaccine Development
Background:
- Cyclin D1 overexpression is common in human tumors, making it a potential cancer antigen.
- Limited characterization of T cell epitopes from cyclin D1 hinders vaccine development.
Purpose of the Study:
- To identify cyclin D1-derived peptides with both CD4 and CD8 T cell epitopes.
- To evaluate if multi-epitope peptides enhance cytotoxic T cell responses, including CD4+ T cells.
Main Methods:
- Computational prediction of HLA-DR.B1 and HLA-A0201-restricted epitopes.
- In vitro immunogenicity assessment using T cells from healthy donors.
- IFN-gamma ELISPOT and (51)Chromium release assays to measure T cell responses and cytotoxicity.
Main Results:
- A predicted peptide (DR-1) containing an embedded HLA-A0201 epitope (D1-1) induced T cell responses.
- DR-1 stimulated CD4+ T cells exhibited cytotoxicity against cyclin D1-expressing cancer cells.
- Class II (HLA-DR) mediated killing was confirmed by antibody blockade.
Conclusions:
- CD4+ T cells can act as cytotoxic effectors against HLA-DR-expressing cancers.
- Multi-epitope peptide design incorporating CD4 epitopes is a promising strategy for anti-cancer vaccines.
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