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Abrogation of TGF-β signaling enhances chemokine production and correlates with prognosis in human breast cancer
Brian Bierie, Christine H. Chung, Joel S. Parker, Daniel G. Stover, Nikki Cheng, Anna Chytil, Mary Aakre, Yu Shyr, Harold L. Moses
Brian Bierie, Christine H. Chung, Joel S. Parker, Daniel G. Stover, Nikki Cheng, Anna Chytil, Mary Aakre, Yu Shyr, Harold L. Moses
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Research Article Oncology

Abrogation of TGF-β signaling enhances chemokine production and correlates with prognosis in human breast cancer

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Abstract

In human breast cancer, loss of carcinoma cell–specific response to TGF-β signaling has been linked to poor patient prognosis. However, the mechanisms through which TGF-β regulates these processes remain largely unknown. In an effort to address this issue, we have now identified gene expression signatures associated with the TGF-β signaling pathway in human mammary carcinoma cells. The results strongly suggest that TGF-β signaling mediates intrinsic, stromal-epithelial, and host-tumor interactions during breast cancer progression, at least in part, by regulating basal and oncostatin M–induced CXCL1, CXCL5, and CCL20 chemokine expression. To determine the clinical relevance of our results, we queried our TGF-β–associated gene expression signatures in 4 human breast cancer data sets containing a total of 1,319 gene expression profiles and associated clinical outcome data. The signature representing complete abrogation of TGF-β signaling correlated with reduced relapse-free survival in all patients; however, the strongest association was observed in patients with estrogen receptor–positive (ER-positive) tumors, specifically within the luminal A subtype. Together, the results suggest that assessment of TGF-β signaling pathway status may further stratify the prognosis of ER-positive patients and provide novel therapeutic approaches in the management of breast cancer.

Authors

Brian Bierie, Christine H. Chung, Joel S. Parker, Daniel G. Stover, Nikki Cheng, Anna Chytil, Mary Aakre, Yu Shyr, Harold L. Moses

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Figure 3

TGF-β attenuated basal and OSM-induced expression of Cxcl1, Cxcl5, and Ccl20 in mammary epithelium.

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TGF-β attenuated basal and OSM-induced expression of Cxcl1, Cxcl5, and C...
TGF-β (10 ng/ml) and OSM (100 ng/ml) stimulation was performed for 1 hour in vitro. Real-time PCR was performed using HC11 (A, C, E, and G) and NMuMG (B, D, F, and H) cell lines. The median transformed 1/ΔCt values are reported as mean ± SEM. TGF-β significantly decreased Cxcl1 and Cxcl5 expression in HC11 and Cxcl1, Cxcl5, and Ccl20 in NMuMG cells (A–F). In the OSM-responsive HC11 cell line, OSM significantly upregulated Cxcl1, Cxcl5, and Ccl20 expression (A, C, and E). TGF-β significantly attenuated the effect of OSM with regard to Cxcl1, Cxcl5, and Ccl20 expression in the HC11 cell line. The NMuMG cell line, which did not respond to OSM in growth response assays or analysis of phospho-Stat3 by Western blot, did not demonstrate chemokine regulation by OSM (B, D, and F). Ccl5 expression was not altered by TGF-β or OSM treatment in the HC11 or NMuMG cell lines (G and H, respectively). **P < 0.05. T + O, combined administration of TGF-β and OSM.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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