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Published on: February 14, 2025
Cancer immunoediting of the NK group 2D ligand H60a
Timothy O'Sullivan1, Gavin P Dunn, Daphne Y Lacoursiere
1Department of Pathology, University of California at San Diego, La Jolla, CA 92093, USA.
Abstract:
Cancer immunoediting describes the process whereby highly immunogenic tumor cells are removed, or edited, from the primary tumor repertoire by the immune system. In immunodeficient mice, the editing process is hampered, and "unedited" tumor cells can be recovered and studied. In this study, we compared unedited and edited tumors for their expression of NK group 2D (NKG2D) ligands, a family of surface proteins expressed on tumor cells that can activate NK cell cytotoxic activity. We found that the expression of the NKG2D ligand H60a was more heterogeneous in groups of unedited 3'-methylcholanthrene sarcoma cell lines compared with that in edited 3'-methylcholanthrene sarcoma cell lines (i.e., some unedited cell lines expressed very high levels of H60a, whereas other unedited and edited cell lines expressed very low levels). We also found that some highly immunogenic cell lines displayed a bimodal distribution consisting of H60a-hi and H60a-lo cells. In one of these cell lines, the H60a-hi cells could be removed by passaging the cells through RAG2(-/-) mice, resulting in edited cell lines that were poor targets for NK cells and that displayed progressive tumor growth. This editing of H60a-hi cells required NK cells and NKG2D. Our studies show that the expression of H60a on tumors cells can be actively modulated by the immune system, thereby implicating this NKG2D ligand in tumor immunosurveillance.
Insights
The immune system actively shapes tumors by editing cancer cells. This study reveals that NK group 2D (NKG2D) ligand H60a expression is modulated by the immune system, impacting tumor immunosurveillance.
Area of Science:
- Immunology
- Cancer Biology
- Cellular and Molecular Oncology
Background:
- Cancer immunoediting describes the immune system's role in eliminating or altering tumor cells.
- Immunodeficient models allow for the study of unedited tumor cells.
- NK group 2D (NKG2D) ligands on tumor cells activate NK cell cytotoxicity.
Purpose of the Study:
- To compare NKG2D ligand expression in edited versus unedited tumors.
- To investigate the role of H60a expression in cancer immunoediting.
- To determine the immune mechanisms involved in H60a modulation.
Main Methods:
- Comparison of H60a expression in edited and unedited 3'-methylcholanthrene sarcoma cell lines.
- Analysis of H60a expression distribution (bimodal: H60a-hi and H60a-lo cells).
- In vivo studies using RAG2(-/-) mice to assess tumor editing and NK cell involvement.
Main Results:
- H60a expression was more heterogeneous in unedited tumors compared to edited tumors.
- Some highly immunogenic cell lines exhibited bimodal H60a expression (H60a-hi and H60a-lo).
- Passaging H60a-hi cells through RAG2(-/-) mice resulted in edited, NK-resistant tumor cells, requiring NK cells and NKG2D.
Conclusions:
- Tumor cell expression of the NKG2D ligand H60a is actively modulated by the immune system.
- H60a plays a role in tumor immunosurveillance through NK cell engagement.
- Immune editing can select for tumor cells with reduced NKG2D ligand expression, promoting tumor growth.
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