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ETS1 Orchestrates a Hybrid EMT Program Driving in vivo Metastasis and Immune Evasion

GSE300573 Homo sapiens Expression profiling by high throughput sequencing 4 samples Submitted 2026/05/08 Platform GPL24676
Summary
Transcriptional Intratumoral heterogeneity (ITH) is a hallmark of aggressive cancers, yet how transcriptional ITH programs drive tumor metastasis and immune evasion in upper aerodigestive squamous cell carcinoma (UASCC) remains unclear. Through single-cell RNA sequencing analysis of UASCC cells and patient tumors, we uncovered a hybrid EMT (hEMT) ITH program linked to metastatic dissemination. The transcription factor ETS1 was identified as a master regulator of hEMT program, directly activating pro-metastatic genes and promoting distant spread in vivo. Unexpectedly, ETS1 also orchestrated an immune-cold tumor microenvironment by transcriptionally activating the STAT1-PDL1 axis, suppressing T lymphocyte infiltration and elevating immune checkpoint molecules. Clinically, ETS1-high tumors strongly correlated with poor survival and resistance to immune checkpoint blockade across multiple cohorts. Leveraging drug screens, we discovered that ETS1-high cancers are vulnerable to HSP90 inhibitors (e.g., Alvespimycin), which suppress ETS1 by disrupting HIF1A-mediated transcriptional activation. Together, our work reveals ETS1 as a dual driver of tumor distal metastasis and immune evasion in UASCC, while nominating HSP90 inhibition as a tailored strategy for ETS1-driven tumors. These findings provide a roadmap for targeting aggressive ITH subsets and overcoming immunotherapy resistance.
Published in
ETS1 Orchestrates a Hybrid EMT Program Driving Metastasis and Immune Evasion
Ziman B, Wenger TA, Nam C et al. · Cancer research 2026 · PMID 42153907 · doi:10.1158/0008-5472.CAN-25-3134
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Also filed as BioProject PRJNA1281405 and SRA study SRP594157. Searching any of these in the dataset finder brings you back here.

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