Keita Yamane, Yohei Kawano, Shun Ohki, Katsuki Matayoshi, Nagisa Morihara, Hitoshi Azuma, Yusei Ota, Yasuo Kitajima, Tomohiro Asai, Tomoharu Yasuda
Low immunogenicity hinders antitumor immunity and causes resistance to immunotherapies in solid tumors. We previously reported that enforced expression of latent membrane protein 1 (LMP1), encoded by the Epstein-Barr virus, enhances the immunogenicity of B cells and triggers immune surveillance while driving their transformation. Here, we demonstrate that LMP1 transduction markedly upregulates MHC class I and co-stimulatory molecules in multiple solid tumor cell lines, enabling CD8+ T cell activation. LMP1 promotes the presentation of endogenous retroviral elements, allowing T cells to eliminate tumor cells, irrespective of LMP1 expression. Mechanistically, we identify the transcription factors Spi-B and IRF1 as key regulators of the immunostimulatory process of LMP1. Furthermore, the co-expression of Spi-B and IRF1 in solid tumor cells elicits robust CD8+ T cell responses and suppresses tumor growth in vivo. These findings uncover a transcriptional axis that activates antigen-presenting functions in solid tumor cells, offering a strategy to overcome immunotherapy resistance.