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Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer

Hepcidin is a peptide hormone that negatively regulates iron efflux and plays an important role in controlling the growth of breast tumors. In patients with breast cancer, the combined expression of hepcidin and its membrane target, ferroportin, predict disease outcome. However, mechanisms that cont...

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Autores principales: Blanchette-Farra, Nicole, Kita, Daniel, Konstorum, Anna, Tesfay, Lia, Lemler, David, Hegde, Poornima, Claffey, Kevin P., Torti, Frank M., Torti, Suzy V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054540/
https://www.ncbi.nlm.nih.gov/pubmed/29695834
http://dx.doi.org/10.1038/s41388-018-0243-y
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author Blanchette-Farra, Nicole
Kita, Daniel
Konstorum, Anna
Tesfay, Lia
Lemler, David
Hegde, Poornima
Claffey, Kevin P.
Torti, Frank M.
Torti, Suzy V.
author_facet Blanchette-Farra, Nicole
Kita, Daniel
Konstorum, Anna
Tesfay, Lia
Lemler, David
Hegde, Poornima
Claffey, Kevin P.
Torti, Frank M.
Torti, Suzy V.
author_sort Blanchette-Farra, Nicole
collection PubMed
description Hepcidin is a peptide hormone that negatively regulates iron efflux and plays an important role in controlling the growth of breast tumors. In patients with breast cancer, the combined expression of hepcidin and its membrane target, ferroportin, predict disease outcome. However, mechanisms that control hepcidin expression in breast cancer cells remain largely unknown. Here we use three-dimensional breast cancer spheroids derived from cell lines and breast cancer patients to probe mechanisms of hepcidin regulation in breast cancer. We observe that the extent of hepcidin induction and pathways of its regulation are markedly changed in breast cancer cells grown in three dimensions. In monolayer culture, BMPs, particularly BMP6, regulate hepcidin transcription. When breast cancer cells are grown as spheroids, there is a >10 fold induction in hepcidin transcripts. Microarray analysis combined with knockdown experiments reveal that GDF-15 is the primary mediator of this change. The increase in hepcidin as breast cells develop a three-dimensional architecture increases intracellular iron, as indicated by an increase in the iron storage protein ferritin. Immunohistochemical staining of human breast tumors confirms that both GDF-15 and hepcidin are expressed in breast cancer specimens. Further, levels of GDF-15 are significantly correlated with levels of hepcidin at both the mRNA and protein level in patient samples, consistent with a role for GDF-15 in control of hepcidin in human breast tumors. Inclusion of tumor-associated fibroblasts in breast cancer spheroids further induces hepcidin. This induction is mediated by fibroblast-dependent secretion of IL-6. Breast cancer cells grown as spheroids are uniquely receptive to IL-6-dependent induction of hepcidin by tumor-associated fibroblasts, since IL-6 does not induce hepcidin in cells grown as monolayers. Collectively, our results suggest a new paradigm for tumor-mediated control of iron through the control of hepcidin by tumor architecture and the breast tumor microenvironment.
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spelling pubmed-60545402018-10-26 Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer Blanchette-Farra, Nicole Kita, Daniel Konstorum, Anna Tesfay, Lia Lemler, David Hegde, Poornima Claffey, Kevin P. Torti, Frank M. Torti, Suzy V. Oncogene Article Hepcidin is a peptide hormone that negatively regulates iron efflux and plays an important role in controlling the growth of breast tumors. In patients with breast cancer, the combined expression of hepcidin and its membrane target, ferroportin, predict disease outcome. However, mechanisms that control hepcidin expression in breast cancer cells remain largely unknown. Here we use three-dimensional breast cancer spheroids derived from cell lines and breast cancer patients to probe mechanisms of hepcidin regulation in breast cancer. We observe that the extent of hepcidin induction and pathways of its regulation are markedly changed in breast cancer cells grown in three dimensions. In monolayer culture, BMPs, particularly BMP6, regulate hepcidin transcription. When breast cancer cells are grown as spheroids, there is a >10 fold induction in hepcidin transcripts. Microarray analysis combined with knockdown experiments reveal that GDF-15 is the primary mediator of this change. The increase in hepcidin as breast cells develop a three-dimensional architecture increases intracellular iron, as indicated by an increase in the iron storage protein ferritin. Immunohistochemical staining of human breast tumors confirms that both GDF-15 and hepcidin are expressed in breast cancer specimens. Further, levels of GDF-15 are significantly correlated with levels of hepcidin at both the mRNA and protein level in patient samples, consistent with a role for GDF-15 in control of hepcidin in human breast tumors. Inclusion of tumor-associated fibroblasts in breast cancer spheroids further induces hepcidin. This induction is mediated by fibroblast-dependent secretion of IL-6. Breast cancer cells grown as spheroids are uniquely receptive to IL-6-dependent induction of hepcidin by tumor-associated fibroblasts, since IL-6 does not induce hepcidin in cells grown as monolayers. Collectively, our results suggest a new paradigm for tumor-mediated control of iron through the control of hepcidin by tumor architecture and the breast tumor microenvironment. 2018-04-26 2018-07 /pmc/articles/PMC6054540/ /pubmed/29695834 http://dx.doi.org/10.1038/s41388-018-0243-y Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Blanchette-Farra, Nicole
Kita, Daniel
Konstorum, Anna
Tesfay, Lia
Lemler, David
Hegde, Poornima
Claffey, Kevin P.
Torti, Frank M.
Torti, Suzy V.
Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
title Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
title_full Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
title_fullStr Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
title_full_unstemmed Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
title_short Contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
title_sort contribution of three dimensional architecture and tumor-associated fibroblasts to hepcidin regulation in breast cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054540/
https://www.ncbi.nlm.nih.gov/pubmed/29695834
http://dx.doi.org/10.1038/s41388-018-0243-y
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