Many studies have demonstrated that the mammalian host can mount a variety of immune responses to invading tumor cells. One such response involves the production of cytotoxic T cells (CTL) that kill tumor cells. Major histocompatability complex (MHC) antigens are critical targets on tumor cells for CTL recognition. Therefore, an understanding of the regulation of MHC antigens on tumor ceIls would further our understanding of tumor rejection. These studies will enhance our knowledge of MHC antigen expression on murine 402AX teratocarcinoma cells. Previous studies from this laboratory have established that: (1) resistance to this tumor is under the genetic control of two genes; (2) resistant animals have the ability to induce MHC antigen expression on the normally MHC-negative 402AX cells; and (3) host-induced, tumor cell MHC antigen expression is regulated by splenic T cells. The current studies will determine: (1) the population of host lymphoid cells that regulate MHC antigen on 402AX cells in vivo; (2) the genetic control of MHC antigen induction of 402AX; (3) the biochemical characterization of 402AX MHC antigens; (4) the role of beta-2-microglobulin in MHC antigen expression on 402AX; (5) the cellular mechanism(s) of tumor cell MHC expression; (6) the precise MHC antigens expressed on 402AX; (7) the molecular level of regulation of MHC antigens on 402AX; (8) the relationship of MHC antigen expression to 402AX cellular differentiation; (9) the stage of the host's immune response to the tumor during which MHC antigens are important; and (10) the tumor-specific transplantation antigens recognized in conjunction with tumor cell MHC antigens. The results of these experiments will increase our knowledge of MHC antigen regulation on tumor cells and may improve our ability to manipulate a host's immune response against a tumor. (AG)

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA034368-03
Application #
3172063
Study Section
Immunobiology Study Section (IMB)
Project Start
1983-05-01
Project End
1986-03-31
Budget Start
1985-04-01
Budget End
1986-03-31
Support Year
3
Fiscal Year
1985
Total Cost
Indirect Cost
Name
University of Maryland Balt CO Campus
Department
Type
Schools of Arts and Sciences
DUNS #
City
Baltimore
State
MD
Country
United States
Zip Code
21250
Ostrand-Rosenberg, S; Roby, C; Clements, V K et al. (1991) Tumor-specific immunity can be enhanced by transfection of tumor cells with syngeneic MHC-class-II genes or allogeneic MHC-class-I genes. Int J Cancer Suppl 6:61-8
Ostrand-Rosenberg, S; Garcia, E P; Roby, C A et al. (1991) Influence of major histocompatibility complex class I, class II and TLA genes on tumor rejection. Semin Cancer Biol 2:311-9
Nishimura, M I; Ostrand-Rosenberg, S (1991) Mouse Hepa-1 tumor is rejected by H-2Db-restricted CTL despite decreased MHC class I antigen expression. Cell Immunol 136:414-24
Cole, G A; Ostrand-Rosenberg, S (1991) Rejection of allogeneic tumor is not determined by host responses to MHC class I molecules and is mediated by CD4-CD8+ T lymphocytes that are not lytic for the tumor. Cell Immunol 134:480-90
Ostrand-Rosenberg, S; Cole, G A; Nishimura, M I et al. (1990) Transfection and expression of syngeneic H-2 genes does not reduce malignancy of H-2 negative teratocarcinoma cells in the autologous host. Cell Immunol 128:152-64
Ostrand-Rosenberg, S; Thakur, A; Clements, V (1990) Rejection of mouse sarcoma cells after transfection of MHC class II genes. J Immunol 144:4068-71
Ostrand-Rosenberg, S; Nickerson, D A; Clements, V K et al. (1989) Embryonal carcinoma cells express Qa and Tla class I genes of the major histocompatibility complex. Proc Natl Acad Sci U S A 86:5084-8
Ostrand-Rosenberg, S; Clements, V K; Thakur, A et al. (1989) Transfection of major histocompatibility complex class I and class II genes causes tumour rejection. J Immunogenet 16:343-9
Nishimura, M I; Stroynowski, I; Hood, L et al. (1988) H-2Kb antigen expression has no effect on natural killer susceptibility and tumorigenicity of a murine hepatoma. J Immunol 141:4403-9
Davy, C A; Tesfay, Z; Jones, J et al. (1988) Endogenous superoxide dismutase and catalase activities and radiation resistance in mouse cell lines. Int J Radiat Biol Relat Stud Phys Chem Med 53:283-9

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