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In Situ Detection of Individual Classic MHC-I Gene Products in Cancer
Journal article   Peer reviewed

In Situ Detection of Individual Classic MHC-I Gene Products in Cancer

Paula I Gonzalez-Ericsson, Susan R Opalenik, Violeta Sanchez, Amy M Palubinsky, Ann Hanna, Xiaopeng Sun, Andres A Ocampo, Guadalupe Garcia, Leonel Maldonado, Zaida Morante, …
Cancer immunology research, Vol.13(4), pp.602-609
2025
PMID: 39804685

Abstract

Alleles Antigens, Neoplasm - immunology Breast Neoplasms - genetics Breast Neoplasms - immunology Female Genes, MHC Class I Histocompatibility Antigens Class I - genetics Histocompatibility Antigens Class I - immunology Histocompatibility Antigens Class I - metabolism Humans Immunohistochemistry - methods Neoplasms - genetics Neoplasms - immunology
Tumor-specific HLA class I expression is required for cytotoxic T-cell elimination of cancer cells expressing tumor-associated antigens or neoantigens. Cancers downregulate antigen presentation to avoid adaptive immunity. The highly polymorphic nature of the genes encoding these proteins, coupled with quaternary-structure changes after formalin fixation, complicates detection by IHC. In this study, we determined recognition of 16 specific HLA-A, -B, and -C alleles by 15 antibodies commercially available for IHC use, identifying and validating pan and specific HLA-A, -B, and -C antibodies, providing a validated method that can be applied to investigate HLA-A, -B, and -C molecule-specific loss in cancer. We applied this approach to a series of breast cancers as a proof of utility, identifying differential HLA-A, -B, and -C loss, with a higher incidence of HLA-A and -B loss in hormone-driven breast cancers, HLA-B loss in HER2+ cancers, and an equal loss of all three molecules in triple-negative disease. Additionally, we found that at the protein level, HLA-A and -B loss were early events prevalent in premalignant lesions, whereas HLA-C loss was less common throughout tumor evolution. Effective response to immunotherapies such as checkpoint inhibitors and MHC-I-targeted cancer vaccines, which hinge on the carriage of specific allele groups, requires MHC-I expression on tumor cells. These findings have implications for the success of checkpoint inhibitors and vaccine strategies.

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