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MAP3K1 mutations confer tumor immune heterogeneity in hormone receptor-positive HER2-negative breast cancer

GSE276527 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2024/12/20 Platform GPL24247
Summary
Hormone receptor-positive (HR+)/human epidermal growth factor receptor 2-negative (HER2-) breast cancer, the most common type of breast cancer, is facing challenges such as endocrine therapy resistance and distant relapse. Immunotherapy has shown progress in treating triple-negative breast cancer, but immunological research on HR+/HER2- breast cancer is still in its early stages. Here, we performed a multi-omics analysis of a large cohort of HR+/HER2- breast cancer patients (n = 351) and revealed that HR+/HER2- breast cancer possessed a highly heterogeneous tumor immune microenvironment. Notably, the immunological heterogeneity of HR+/HER2- breast cancer was related to MAP3K1 mutation and we validated experimentally that MAP3K1 mutation could attenuate CD8+ T cell-mediated antitumor immunity. Mechanistically, MAP3K1 mutation suppressed MHC-I-mediated tumor antigen presentation through promoting the degradation of antigen peptide transporter 1/2 (TAP1/2) mRNAs, thereby driving tumor immune escape. In preclinical models, the postbiotics tyramine could reverse the MAP3K1 mutation-induced MHC-I reduction, thereby augmenting the efficacy of immunotherapy.
Published in
MAP3K1 mutations confer tumor immune heterogeneity in hormone receptor-positive HER2-negative breast cancer
Cai YW, Liu CC, Zhang YW et al. · The Journal of clinical investigation 2024 · PMID 39531335 · doi:10.1172/JCI183656
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Also filed as BioProject PRJNA1157767 and SRA study SRP531025. Searching any of these in the dataset finder brings you back here.

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