Simian virus 40 (SV40)-transgenic mice that develop tumors are specifically tolerant to SV40 T antigen
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C. Pinkert | R. Brinster | B. Knowles | S. Pan | S. Faas
[1] R. Palmiter,et al. A transgenic mouse model of the chronic hepatitis B surface antigen carrier state. , 1985, Science.
[2] R. Palmiter,et al. SV40 enhancer and large-T antigen are instrumental in development of choroid plexus tumours in transgenic mice , 1985, Nature.
[3] D. Hanahan,et al. Heritable formation of pancreatic beta-cell tumours in transgenic mice expressing recombinant insulin/simian virus 40 oncogenes. , 1985, Nature.
[4] S. Tonegawa,et al. Cell type-specific enhancer element associated with a mouse MHC gene, Eβ , 1984, Nature.
[5] R. Palmiter,et al. Transgenic mice harboring SV40 t-antigen genes develop characteristic brain tumors , 1984, Cell.
[6] G. Maul,et al. Tumor induction by simian virus 40 in mice is controlled by long-term persistence of the viral genome and the immune response of the host , 1984, Journal of virology.
[7] S. Tonegawa,et al. A tissue-specific transcription enhancer element is located in the major intron of a rearranged immunoglobulin heavy chain gene , 1983, Cell.
[8] J. Banerji,et al. A lymphocyte-specific cellular enhancer is located downstream of the joining region in immunoglobulin heavy chain genes , 1983, Cell.
[9] B. Knowles,et al. Monoclonal antibody to SV40 T-antigen blocks lysis of cloned cytotoxic T-cell line specific for SV40 TASA. , 1983, Virology.
[10] L. Gooding. Characterization of a progressive tumor from C3H fibroblasts transformed in vitro with SV40 virus. Immunoresistance in vivo correlates with phenotypic loss of H-2Kk. , 1982, Journal of Immunology.
[11] J. Bennink,et al. Early dominance of irradiated host cells in the responder profiles of thymocytes from P leads to F1 radiation chimeras. , 1981, Journal of Immunology.
[12] G. Nossal,et al. Functional clonal deletion in immunological tolerance to major histocompatibility complex antigens. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[13] D. Solter,et al. Genetic control of the cytotoxic T cell response to SV40 tumor-associated specific antigen. , 1979, Journal of immunology.
[14] B. Knowles,et al. Reactivity to SV40 T antigen in athymic (nude), anti-thymocyte serum-treated, and normal mice. , 1977, Journal of Immunology.
[15] S. Dorsch,et al. Recirculating, suppressor T cells in transplantation tolerance , 1977, The Journal of experimental medicine.
[16] L. Gooding. Specificities of killing by cytotoxic lymphocytes generated in vivo and in vitro to syngeneic SV40 transformed cells. , 1977, Journal of immunology.
[17] A. Goldstein,et al. Requirement of Thymus-Derived θ-Positive Lymphocytes for Rejection of DNA Virus (SV40) Tumors in Mice , 1974, The Journal of Immunology.
[18] P. Medawar,et al. ‘Actively Acquired Tolerance’ of Foreign Cells , 1953, Nature.
[19] A. Levine,et al. A comparison of several lines of transgenic mice containing the SV40 early genes. , 1985, Cold Spring Harbor symposia on quantitative biology.
[20] B. Stockinger. Cytotoxic T-cell precursors revealed in neonatally tolerant mice. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[21] P. Wood,et al. Ontogeny of acquired immunological tolerance to H‐2 alloantigens , 1982, European journal of immunology.
[22] W. Weigle. Immunological unresponsiveness. , 1973, Advances in immunology.