Adaptation of the Tumor Antigen Presentation Machinery to Ionizing Radiation

Author:

Lee Mi-Heon1ORCID,Ratanachan Duang1ORCID,Wang Zitian1ORCID,Hack Jacob1ORCID,Adbulrahman Lobna1,Shamlin Nicholas P.1,Kalayjian Mirna1ORCID,Nesseler Jean Philippe1,Ganapathy Ekambaram1,Nguyen Christine1,Ratikan Josephine A.1,Cacalano Nicolas A.1,Austin David2,Damoiseaux Robert2345ORCID,DiPardo Benjamin J.6,Graham Danielle S.6ORCID,Kalbasi Anusha156ORCID,Sayre James W.57ORCID,McBride William H.15ORCID,Schaue Dörthe15

Affiliation:

1. *Department of Radiation Oncology, University of California, Los Angeles, Los Angeles, CA

2. †Department of Molecular and Medical Pharmacology, University of California, Los Angeles, Los Angeles, CA

3. ‡Department of Bioengineering, University of California, Los Angeles, Los Angeles, CA

4. §CNSI, University of California, Los Angeles, Los Angeles, CA

5. ¶Jonsson Comprehensive Cancer Center, University of California, Los Angeles, Los Angeles, CA

6. ‖Department of Surgery, University of California, Los Angeles, Los Angeles, CA

7. #School of Public Health, Biostatistics and Radiology at the University of California, Los Angeles, Los Angeles, CA

Abstract

Abstract Ionizing radiation (IR) can reprogram proteasome structure and function in cells and tissues. In this article, we show that IR can promote immunoproteasome synthesis with important implications for Ag processing and presentation and tumor immunity. Irradiation of a murine fibrosarcoma (FSA) induced dose-dependent de novo biosynthesis of the immunoproteasome subunits LMP7, LMP2, and Mecl-1, in concert with other changes in the Ag-presentation machinery (APM) essential for CD8+ T cell–mediated immunity, including enhanced expression of MHC class I (MHC-I), β2-microglobulin, transporters associated with Ag processing molecules, and their key transcriptional activator NOD-like receptor family CARD domain containing 5. In contrast, in another less immunogenic, murine fibrosarcoma (NFSA), LMP7 transcripts and expression of components of the immunoproteasome and the APM were muted after IR, which affected MHC-I expression and CD8+ T lymphocyte infiltration into NFSA tumors in vivo. Introduction of LMP7 into NFSA largely corrected these deficiencies, enhancing MHC-I expression and in vivo tumor immunogenicity. The immune adaptation in response to IR mirrored many aspects of the response to IFN-γ in coordinating the transcriptional MHC-I program, albeit with notable differences. Further investigations showed divergent upstream pathways in that, unlike IFN-γ, IR failed to activate STAT-1 in either FSA or NFSA cells while heavily relying on NF-κB activation. The IR-induced shift toward immunoproteasome production within a tumor indicates that proteasomal reprogramming is part of an integrated and dynamic tumor–host response that is specific to the stressor and the tumor and therefore is of clinical relevance for radiation oncology.

Funder

HHS | NIH | National Cancer Institute

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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