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Updated: Nov 18, 2025

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
TGFβ drives NK cell metabolic dysfunction in human metastatic breast cancer
Karen Slattery1, Elena Woods1, Vanessa Zaiatz-Bittencourt1
1School of Biochemistry and Immunology, Trinity College Dublin, Dublin, Ireland.
Background:
Natural killer (NK) cells provide important immune protection from cancer and are a key requirement for particular immunotherapies. There is accumulating evidence that NK cells become dysfunctional during cancer. Overcoming NK cell exhaustion would be an important step to allow them to function optimally in a range of NK cell therapies, including those that depend on autologos circulating NK cells. We have previously demonstrated that NK cells undergo a normal metabolic reprogramming in response to cytokine activation and that this is required for optimal function. The objective of this work was to investigate if cellular metabolism of circulating NK cells is dysregulated in patients with metastatic breast cancer and if so, to gain insights into potential mechanisms underpinning this. Such discoveries would provide important insights into how to unleash the full activity of NK cells for maximum immunotherapy output.
Methods:
Single-cell analysis, metabolic flux and confocal analysis of NK cells from patients with metastatic breast cancer and healthy controls RESULTS: In addition to reduced interferon-γ production and cytotoxicity, peripheral blood NK cells from patients had clear metabolic deficits including reduced glycolysis and oxidative phosphorylation. There were also distinct morphologically alterations in the mitochondria with increased mitochondrial fragmentation observed. Transforminggrowth factor-β (TGFβ) was identified as a key driver of this phenotype as blocking its activity reversed many metabolic and functional readouts. Expression of glycoprotein-A repetitions predominant (GARP) and latency associated peptide (LAP), which are involved with a novel TGFβ processing pathway, was increased on NK cells from some patients. Blocking the GARP-TGFβ axis recapitulated the effects of TGFβ neutralization, highlighting GARP as a novel NK cell immunotherapy target for the first time.
Conclusions:
TGFβ contributes to metabolic dysfunction of circulating NK cells in patients with metastatic breast cancer. Blocking TGFβ and/or GARP can restore NK cell metabolism and function and is an important target for improving NK cell-based immunotherapies.
Insights
Metastatic breast cancer impairs natural killer (NK) cell metabolism and function. Targeting transforming growth factor-beta (TGFβ) and glycoprotein-A repetitions predominant (GARP) can restore NK cell activity for improved cancer immunotherapy.
Area of Science:
- Immunology
- Metabolic pathways
- Cancer biology
Background:
- Natural killer (NK) cells are crucial for anti-cancer immunity and immunotherapy.
- NK cell dysfunction is observed in cancer, necessitating strategies to restore their function.
- Metabolic reprogramming is essential for optimal NK cell activity.
Purpose of the Study:
- To investigate metabolic dysregulation in circulating NK cells from metastatic breast cancer patients.
- To identify mechanisms underlying NK cell dysfunction in this patient group.
- To explore therapeutic strategies for enhancing NK cell activity in immunotherapy.
Main Methods:
- Single-cell analysis, metabolic flux, and confocal microscopy were employed.
- NK cells were analyzed from metastatic breast cancer patients and healthy controls.
- Transforming growth factor-beta (TGFβ) and its associated pathways were investigated.
Main Results:
- NK cells from patients exhibited reduced interferon-γ production, cytotoxicity, glycolysis, and oxidative phosphorylation.
- Mitochondrial alterations, including fragmentation, were observed in patient NK cells.
- Transforming growth factor-beta (TGFβ) was identified as a key driver; blocking it restored NK cell function.
- Increased expression of glycoprotein-A repetitions predominant (GARP) and latency associated peptide (LAP) was noted, and blocking the GARP-TGFβ axis showed therapeutic potential.
Conclusions:
- Transforming growth factor-beta (TGFβ) drives metabolic dysfunction in NK cells of metastatic breast cancer patients.
- Blocking TGFβ and/or GARP can restore NK cell metabolism and function.
- Targeting the GARP-TGFβ axis represents a novel strategy for enhancing NK cell-based immunotherapies.
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