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Natural killer target molecules associated with the transformation of the oncogene-transfected fibroblast
1Department of Pathology, Sapporo Medical College, Japan.
Abstract:
Cell surface antigens, the expression of which is highly enhanced along with the transformation of cells, were analyzed. W14 and W31, EJ-ras oncogene-induced transformants of a WKA rat fetus-derived fibroblast WFB, strongly expressed several transformation-associated antigens as defined by monoclonal antibodies 109, 061, and 081. These monoclonal antibodies recognized Mr 86,000, 62,000, and 101,000 molecules, each composed of a single polypeptide chain. The expression of these transformation-associated antigens was negligible on parental WFB cells. Transforming growth factor-beta could enhance the expression of all of these transformation-associated antigens, but platelet-derived growth factor could only enhance the Mr 86,000 kd molecule expression. In the cytotoxicity assays, poly-I:C-induced rat splenic NK cells were cytotoxic to W14 and W31, but not to WFB. The data also showed that the cytotoxicity by these NK cells against NK-sensitive YAC-1 cells was absorbed with the addition of W14, W31, platelet-derived growth factor, or transforming growth factor-beta-stimulated WFB cells. This indicates that NK cells may recognize common target antigens that are expressed among these target cells. It was also indicated that Mr 86,000 and 62,000 molecules were strongly involved in this cytotoxicity, possibly as the target antigens, since F(ab')2 fragments of monoclonal antibodies 109 and 061 strongly inhibited the cytotoxicity. The addition of monoclonal antibody 109, but not 061, inhibited the cytotoxicity even at 60 min after mixing with the effector and target cells, suggesting that the Mr 86,000 molecule may participate in the lethal hit phase of cytotoxicity by NK cells. These data may indicate that some, but not all, transformation-associated antigens are virtually important in the antitumor surveillance mechanisms by the host effector cells, such as NK cells.
Insights
Cancer cells express specific antigens that natural killer (NK) cells can target. Researchers identified transformation-associated antigens on ras oncogene-induced tumor cells, finding that NK cells recognize and attack these cells, with specific molecules mediating this interaction.
Area of Science:
- Immunology
- Cell Biology
- Oncology
Background:
- Cell transformation leads to altered expression of cell surface antigens.
- Ras oncogene-induced transformants (W14, W31) derived from WFB fibroblasts show enhanced antigen expression compared to parental cells.
Purpose of the Study:
- To analyze transformation-associated antigens on EJ-ras oncogene-induced transformants.
- To investigate the role of these antigens in natural killer (NK) cell-mediated cytotoxicity.
- To identify specific molecules involved in NK cell recognition and killing of tumor cells.
Main Methods:
- Monoclonal antibody characterization of cell surface antigens.
- Growth factor stimulation assays (transforming growth factor-beta, platelet-derived growth factor).
- NK cell cytotoxicity assays using poly-I:C-induced rat splenic NK cells.
- Inhibition assays with monoclonal antibody fragments (F(ab')2).
Main Results:
- EJ-ras transformants (W14, W31) expressed transformation-associated antigens (Mr 86,000, 62,000, 101,000) not found on parental WFB cells.
- Transforming growth factor-beta and platelet-derived growth factor differentially modulated antigen expression.
- NK cells were cytotoxic to W14 and W31 cells, but not WFB cells.
- Monoclonal antibodies 109 (Mr 86,000) and 061 (Mr 62,000) inhibited NK cell cytotoxicity, indicating their role as target antigens.
- Monoclonal antibody 109 specifically inhibited cytotoxicity during the lethal hit phase.
Conclusions:
- Transformation-associated antigens are recognized by NK cells.
- Specific molecules (Mr 86,000 and 62,000) are involved in NK cell targeting of tumor cells.
- The Mr 86,000 molecule may play a crucial role in the lethal hit phase of NK cell-mediated antitumor surveillance.