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Proteogenomic identification of an immunogenic HLA class I neoantigen in mismatch repair–deficient colorectal cancer tissue
Tomomi Hirama, Serina Tokita, Munehide Nakatsugawa, Kenji Murata, Yasuhito Nannya, Kazuhiko Matsuo, Hidetoshi Inoko, Yoshihiko Hirohashi, Shinichi Hashimoto, Seishi Ogawa, Ichiro Takemasa, Noriyuki Sato, Fumitake Hata, Takayuki Kanaseki, Toshihiko Torigoe
Tomomi Hirama, Serina Tokita, Munehide Nakatsugawa, Kenji Murata, Yasuhito Nannya, Kazuhiko Matsuo, Hidetoshi Inoko, Yoshihiko Hirohashi, Shinichi Hashimoto, Seishi Ogawa, Ichiro Takemasa, Noriyuki Sato, Fumitake Hata, Takayuki Kanaseki, Toshihiko Torigoe
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Research Article Immunology

Proteogenomic identification of an immunogenic HLA class I neoantigen in mismatch repair–deficient colorectal cancer tissue

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Abstract

Although CD8+ T cells recognize neoantigens that arise from somatic mutations in cancer, only a small fraction of nonsynonymous mutations give rise to clinically relevant neoantigens. In this study, HLA class I ligandomes of a panel of human colorectal cancer (CRC) and matched normal tissues were analyzed using mass spectrometry–based proteogenomic analysis. Neoantigen presentation was rare; however, the analysis detected a single neoantigen in a mismatch repair–deficient CRC (dMMR-CRC) tissue sample carrying 3967 nonsynonymous mutations, where abundant tumor-infiltrating lymphocytes (TILs) and inflamed gene expression status were observed in the tumor microenvironment (TME). Using the HLA class I ligandome data and gene expression profiles, a set of nonmutated tumor-associated antigen (TAA) candidates was concomitantly identified. Interestingly, CD8+ TILs predominantly recognized the detected neoantigen over the array of TAA candidates. Neoantigen-reactive CD8+ TILs showed PD-1 positivity and exhibited functional and specific responses. Moreover, T cell receptor (TCR) profiling identified the sequence of the neoantigen-reactive TCR clonotype and showed its expansion in the TME. Transduction of the sequenced TCR conferred neoantigen specificity and cytotoxicity to peripheral blood lymphocytes. The proteogenomic approach revealed the antigenic and reactive T cell landscape in dMMR-CRC, demonstrating the presence of an immunogenic neoantigen and its potential therapeutic applications.

Authors

Tomomi Hirama, Serina Tokita, Munehide Nakatsugawa, Kenji Murata, Yasuhito Nannya, Kazuhiko Matsuo, Hidetoshi Inoko, Yoshihiko Hirohashi, Shinichi Hashimoto, Seishi Ogawa, Ichiro Takemasa, Noriyuki Sato, Fumitake Hata, Takayuki Kanaseki, Toshihiko Torigoe

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Figure 3

Proteogenomic identification of a neoantigen directly from dMMR-CRC tissue.

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Proteogenomic identification of a neoantigen directly from dMMR-CRC tiss...
(A) Numbers of nonsynonymous (missense and frameshift) somatic mutations in CRC tumor tissues with pMMR (CRC009, -052, -054, -057, and -059) and dMMR (CRC111). (B) Numbers of neoantigens predicted in silico using WES and RNA-seq data under the condition of NetMHCpan-4.1 %rank < 2.0 or < 0.5, the TPM of the source genes > 0 and the peptide length of 8–11 amino acids. (C) Neoantigen and its WT counterpart sequences identified in CRC111 tumor tissue using a proteogenomic approach at an FDR of 0.01. MS/MS spectra and the corresponding b- and y-fragment ions of both endogenous and synthetic peptides are shown. (D) Coverage track of the TUBB gene mutation in CRC111 tumor tissue visualized using the Integrative Genomics Viewer (IGV) (http://software.broadinstitute.org/software/igv/).

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