Generation of tumor antigen-specific murine CD8 + T cells with enhanced anti-tumor activity via highly efficient CRISPR/Cas9 genome editing

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Abstract

Immunotherapies have led to the successful development of novel therapies for cancer. However, there is increasing concern regarding the adverse effects caused by non-tumor-specific immune responses. Here, we report an effective strategy to generate high-avidity tumor-antigen-specific CTLs, using Cas9/single-guide RNA (sgRNA) ribonucleoprotein (RNP) delivery. As a proof-ofprinciple demonstration, we selected the gp100 melanoma-associated tumor antigen, and cloned the gp100-specific high-avidity TCR from gp100-immunized mice. To enable rapid structural dissection of the TCR, we developed a 3D protein structure modeling system for the TCR/antigenmajor histocompatibility complex (pMHC) interaction. Combining these technologies, we efficiently generated gp100-specific PD-1(-) CD8 + T cells, and demonstrated that the genetically engineered CD8 + T cells have high avidity against melanoma cells both in vitro and in vivo. Our methodology offers computational prediction of the TCR response, and enables efficient generation of tumor antigen-specific CD8+ T cells that can neutralize tumor-induced immune suppression leading to a potentially powerful cancer therapeutic.

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APA

Ouchi, Y., Patil, A., Tamura, Y., Nishimasu, H., Negishi, A., Paul, S. K., … Uematsu, S. (2018). Generation of tumor antigen-specific murine CD8 + T cells with enhanced anti-tumor activity via highly efficient CRISPR/Cas9 genome editing. International Immunology, 30(4), 141–154. https://doi.org/10.1093/intimm/dxy006

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