Breast cancer cell-derived extracellular vesicles promote CD8+ T cell exhaustion via TGF-β type II receptor signaling

Author:

Xie Feng,Zhou Xiaoxue,Su Peng,Li Heyu,Tu Yifei,Du Jinjin,Pan Chen,Wei Xiang,Zheng Min,Jin KeORCID,Miao Liyan,Wang ChaoORCID,Meng Xuli,van Dam Hans,ten Dijke Peter,Zhang LongORCID,Zhou FangfangORCID

Abstract

AbstractCancer immunotherapies have shown clinical success in various types of tumors but the patient response rate is low, particularly in breast cancer. Here we report that malignant breast cancer cells can transfer active TGF-β type II receptor (TβRII) via tumor-derived extracellular vesicles (TEV) and thereby stimulate TGF-β signaling in recipient cells. Up-take of extracellular vesicle-TβRII (EV-TβRII) in low-grade tumor cells initiates epithelial-to-mesenchymal transition (EMT), thus reinforcing cancer stemness and increasing metastasis in intracardial xenograft and orthotopic transplantation models. EV-TβRII delivered as cargo to CD8+ T cells induces the activation of SMAD3 which we demonstrated to associate and cooperate with TCF1 transcription factor to impose CD8+ T cell exhaustion, resulting in failure of immunotherapy. The levels of TβRII+ circulating extracellular vesicles (crEV) appears to correlate with tumor burden, metastasis and patient survival, thereby serve as a non-invasive screening tool to detect malignant breast tumor stages. Thus, our findings not only identify a possible mechanism by which breast cancer cells can promote T cell exhaustion and dampen host anti-tumor immunity, but may also identify a target for immune therapy against the most devastating breast tumors.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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1. Circadian rhythms and breast cancer: from molecular level to therapeutic advancements;Journal of Cancer Research and Clinical Oncology;2024-09-12

2. T cell exhaustion in human cancers;Biochimica et Biophysica Acta (BBA) - Reviews on Cancer;2024-09

3. Exosomes-based immunotherapy for cancer: Effective components in the naïve and engineered forms;International Immunopharmacology;2024-09

4. Cancer stem cell-derived exosomes in CD8+ T cell exhaustion;International Immunopharmacology;2024-08

5. Extracellular vesicles and cancer stem cells: a deadly duo in tumor progression;Oncology Reviews;2024-07-18

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