Spatial Multi-Omics Reveals an Immunometabolic Niche Defined by PROM1+SLC27A4+ Tumor-Initiating Cells and CD8A+ABCA12+ Exhausted T Cells in HER2-Positive Breast Cancer

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Abstract

Despite targeted therapy advances, drug resistance and metastasis remain the primary causes of mortality in HER2-positive breast cancer. The crosstalk between tumor-initiating cells (TICs) and specific CD8 + T cell subsets in the tumor microenvironment (TME) that may contribute to treatment failure remains poorly defined. Here, by integrating snRNA-seq (N=20), spatial transcriptomics with spatial metabolomics (N=5), spatial in situ analysis (N=42), proteomics (N=12), functional co-culture assays, and clinical tissue validation (N=279), as well as reanalysis of public datasets (N=35), we identified a PROM1 + SLC27A4 + TICs (tumor-initiating cells) – associated CD8A + ABCA12 + exhausted T cell population enriched in HER2-positive breast cancer. Spatial and functional analyses support a model in which PROM1 + SLC27A4 + TICs engage EGFR-expressing CD8A + ABCA12 + cells through an EGF-enriched signaling axis, consistent with STAT5-dependent upregulation of TIGIT and ABCA12. In turn, CD8A + ABCA12 + cells facilitate ABCA12-dependent lignoceric acid release, putatively imported by PROM1 + SLC27A4 + TICs in a SLC27A4-dependent manner, associated with peri-droplet mitochondrial (PDM) remodeling, MFN2 upregulation and enhanced ATP production. Trajectory analyses suggest that CD8A + ABCA12 + cells are transcriptionally and spatially connected to CD8A + ITGAE + tissue-resident memory cells, consistent with a putative exhaustion-associated state transition. CD8A + ABCA12 + cells were enriched in primary tumors, metastatic lesions and post-chemotherapy specimens, correlating with poor clinical outcome. These findings define an immunometabolic TIC-associated niche that may contribute to therapy resistance and metastatic progression in HER2-positive breast cancer.

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