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Cancer cell-derived exosomal miR-20a-5p inhibits CD8+ T-cell function and confers anti-programmed cell death 1
Weina Li1, Guohui Han2, Feng Li3
1Department of Radiotherapy, Shanxi Province Cancer Hospital/Shanxi Hospital Affiliated to Cancer Hospital, Chinese Academy of Medical Sciences/Cancer Hospital Affiliated to Shanxi Medical University, Taiyuan, China.
Abstract:
Circulating miRNAs (cirmiRNAs) can be packaged into the exosomes, participating in intercellular communication, which affects the malignant progression and therapy resistance of triple-negative breast cancer (TNBC). Currently, immune checkpoint inhibitors that regulate T-cell function, especially antibodies against programmed cell death 1 (PD-1) or its ligand PD-L1, are emerging as new promising therapy for TNBC patients. However, only very limited patients showed complete or partial response to anti-PD-1 treatment. Dysfunction of CD8+ T cells is one of the key reasons for the immune escape of TNBC. The regulation of exosome-derived cirmiRNAs on CD8+ T cells in TNBC deserves more investigation. Here, the cirmiR-20a-5p level was significantly upregulated in the plasma of TNBC patients and culture supernatant of TNBC cells. High abundance of cirmiR-20a-5p was correlated with a worse prognosis of TNBC. cirmiR-20a-5p was secreted in the form of exosomes by TNBC cells. Exosomal cirmiR-20a-5p was internalized into CD8+ T cells and resulted into the dysfunction of CD8+ T. A mechanism study uncovered that cirmiR-20a-5p targeted the nuclear protein ataxia-telangiectasia (NPAT) and decreased NPAT expression in CD8+ T cells. An in vivo xenograft mouse model showed that cirmiR-20a-5p conferred TNBC to anti-PD-1 treatment resistance. Collectively, these findings indicated that cirmiR-20a-5p released by TNBC cells via exosome promotes cancer cell growth and leads to the immunosuppression by inducing CD8+ T cell dysfunction. This study suggests that targeting cirmiR-20a-5p might be a novel strategy for overcoming the resistance of TNBC to anti-PD-1 immunotherapy.
Insights
Exosomes from triple-negative breast cancer (TNBC) release cirmiR-20a-5p, which impairs CD8+ T cells. Targeting this molecule may overcome resistance to PD-1 immunotherapy in TNBC.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Triple-negative breast cancer (TNBC) exhibits resistance to current immunotherapies like PD-1 inhibitors.
- CD8+ T cell dysfunction is a key mechanism of immune escape in TNBC.
- Exosomes mediate intercellular communication, influencing cancer progression and therapy resistance.
Purpose of the Study:
- Investigate the role of exosome-derived circulating microRNAs (cirmiRNAs) in TNBC progression and anti-PD-1 therapy resistance.
- Determine the specific function and mechanism of cirmiR-20a-5p in modulating CD8+ T cell activity within the TNBC tumor microenvironment.
Main Methods:
- Quantified cirmiR-20a-5p levels in plasma and cell supernatants from TNBC patients and cell lines.
- Utilized exosome isolation and characterization techniques.
- Performed in vitro co-culture assays with CD8+ T cells and TNBC cells.
- Conducted in vivo studies using a TNBC xenograft mouse model.
- Investigated the molecular target of cirmiR-20a-5p in CD8+ T cells.
Main Results:
- cirmiR-20a-5p was significantly upregulated in TNBC patients and secreted via exosomes.
- Exosomal cirmiR-20a-5p internalization led to CD8+ T cell dysfunction.
- cirmiR-20a-5p directly targeted and reduced nuclear protein ataxia-telangiectasia (NPAT) expression in CD8+ T cells.
- High cirmiR-20a-5p levels correlated with poor prognosis and conferred resistance to anti-PD-1 therapy in vivo.
Conclusions:
- Exosomal cirmiR-20a-5p promotes TNBC growth and immune suppression by inducing CD8+ T cell dysfunction.
- cirmiR-20a-5p is a potential biomarker for TNBC prognosis.
- Targeting cirmiR-20a-5p represents a promising strategy to enhance anti-PD-1 immunotherapy efficacy in TNBC.
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