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Generating De Novo Antigen-specific Human T Cell Receptors by Retroviral Transduction of Centric Hemichain
Published on: October 25, 2016
Identification of a unique tumor antigen as rejection antigen by molecular cloning and gene transfer
Abstract:
Tumor-specific transplantation antigens are antigens that can lead to complete immunological destruction of a transplanted cancer by the syngeneic host. When such antigens are expressed on cancers induced by chemical or physical carcinogens, then they are usually unique, i.e., antigenically different for each independently induced tumor. In this study, we show that the product of a gene encoding a novel MHC class I molecule and isolated from the murine UV light-induced regressor tumor 1591 represents one such unique tumor-specific transplantation antigen that causes tumor rejection. The major evidence comes from our finding that 1591 progressor variants regularly lost the gene encoding this antigen that is expressed in the parental tumor that regresses in normal mice; furthermore, reintroduction of this gene into a 1591 progressor variant by DNA transfection caused the progressor variant to regress in normal immunocompetent mice. Thus, the progressor tumor reverted to the parental regressor phenotype following transfection. Consistent with the conclusion that the expression of the novel MHC class I gene following transfection was responsible for the regressor phenotype is also our finding that a variant of the transfected tumor that had lost expression of the transfected gene resumed its progressive growth behavior. Finally, we show that the molecule encoded by the novel class I gene is specifically recognized by a syngeneic tumor-specific cytolytic T cell clone that we have previously shown to select in vitro for progressor variants from the parental regressor tumor cell line. It remains to be determined to what extent unique tumor-specific rejection antigens of other highly immunogenic regressor tumors are encoded by novel MHC class I genes and whether these genes represent germline mutations or somatic mutations caused by the carcinogen treatment.
Insights
A novel gene encoding a major histocompatibility complex (MHC) class I molecule was identified as a unique tumor-specific transplantation antigen. This antigen triggers complete rejection of transplanted cancers by the host immune system, demonstrating its role in tumor regression.
Area of Science:
- Immunology
- Oncology
- Genetics
Background:
- Tumor-specific transplantation antigens (TSTA) can induce complete rejection of transplanted tumors by the host.
- Antigens on chemically or physically induced tumors are typically unique to each tumor.
- The genetic basis for many unique TSTAs remains largely unknown.
Purpose of the Study:
- To identify and characterize the gene encoding a unique tumor-specific transplantation antigen responsible for tumor rejection.
- To investigate the role of this novel antigen in the immune response against UV-induced murine tumors.
Main Methods:
- Isolation and characterization of a novel major histocompatibility complex (MHC) class I gene from a UV-induced regressor tumor (1591).
- Analysis of gene expression in regressor and progressor tumor variants.
- DNA transfection of the identified gene into progressor tumor variants.
- Assessment of tumor rejection and progression in immunocompetent mice following gene reintroduction.
- Characterization of TSTA recognition by syngeneic cytolytic T cell clones.
Main Results:
- A novel MHC class I gene, isolated from a regressor tumor, functions as a unique TSTA.
- Progressor tumor variants consistently lost the expression of this gene.
- Reintroduction of the gene into progressor variants restored the regressor phenotype, leading to tumor rejection.
- Loss of the transfected gene in progressor variants resulted in resumed tumor growth.
- The novel MHC class I molecule is recognized by tumor-specific cytolytic T cells.
Conclusions:
- A novel MHC class I gene product acts as a unique tumor-specific transplantation antigen, mediating tumor rejection.
- The identified gene is crucial for the regressor phenotype of the UV-induced tumor.
- This finding opens avenues for understanding the genetic basis of unique TSTAs and their potential therapeutic implications.
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