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Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor

Aberrantly high levels of tyrosine-phosphorylated signal transducer and activator of transcription 3 (p-STAT3) are found constitutively in ~50% of human lung and breast cancers, acting as an oncogenic transcription factor. We previously demonstrated that Manuka honey (MH) inhibits p-STAT3 in breast...

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Autores principales: Aryappalli, Priyanka, Shabbiri, Khadija, Masad, Razan J., Al-Marri, Roadha H., Haneefa, Shoja M., Mohamed, Yassir A., Arafat, Kholoud, Attoub, Samir, Cabral-Marques, Otavio, Ramadi, Khalil B., Fernandez-Cabezudo, Maria J., al-Ramadi, Basel K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6769459/
https://www.ncbi.nlm.nih.gov/pubmed/31491838
http://dx.doi.org/10.3390/ijms20184340
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author Aryappalli, Priyanka
Shabbiri, Khadija
Masad, Razan J.
Al-Marri, Roadha H.
Haneefa, Shoja M.
Mohamed, Yassir A.
Arafat, Kholoud
Attoub, Samir
Cabral-Marques, Otavio
Ramadi, Khalil B.
Fernandez-Cabezudo, Maria J.
al-Ramadi, Basel K.
author_facet Aryappalli, Priyanka
Shabbiri, Khadija
Masad, Razan J.
Al-Marri, Roadha H.
Haneefa, Shoja M.
Mohamed, Yassir A.
Arafat, Kholoud
Attoub, Samir
Cabral-Marques, Otavio
Ramadi, Khalil B.
Fernandez-Cabezudo, Maria J.
al-Ramadi, Basel K.
author_sort Aryappalli, Priyanka
collection PubMed
description Aberrantly high levels of tyrosine-phosphorylated signal transducer and activator of transcription 3 (p-STAT3) are found constitutively in ~50% of human lung and breast cancers, acting as an oncogenic transcription factor. We previously demonstrated that Manuka honey (MH) inhibits p-STAT3 in breast cancer cells, but the exact mechanism remained unknown. Herein, we show that MH-mediated inhibition of p-STAT3 in breast (MDA-MB-231) and lung (A549) cancer cell lines is accompanied by decreased levels of gp130 and p-JAK2, two upstream components of the IL-6 receptor (IL-6R) signaling pathway. Using an ELISA-based assay, we demonstrate that MH binds directly to IL-6Rα, significantly inhibiting (~60%) its binding to the IL-6 ligand. Importantly, no evidence of MH binding to two other cytokine receptors, IL-11Rα and IL-8R, was found. Moreover, MH did not alter the levels of tyrosine-phosphorylated or total Src family kinases, which are also constitutively activated in cancer cells, suggesting that signaling via other growth factor receptors is unaffected by MH. Binding of five major MH flavonoids (luteolin, quercetin, galangin, pinocembrin, and chrysin) was also tested, and all but pinocembrin could demonstrably bind IL-6Rα, partially (30–35%) blocking IL-6 binding at the highest concentration (50 μM) used. In agreement, each flavonoid inhibited p-STAT3 in a dose-dependent manner, with estimated IC(50) values in the 3.5–70 μM range. Finally, docking analysis confirmed the capacity of each flavonoid to bind in an energetically favorable configuration to IL-6Rα at a site predicted to interfere with ligand binding. Taken together, our findings identify IL-6Rα as a direct target of MH and its flavonoids, highlighting IL-6R blockade as a mechanism for the anti-tumor activity of MH, as well as a viable therapeutic target in IL-6-dependent cancers.
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spelling pubmed-67694592019-10-30 Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor Aryappalli, Priyanka Shabbiri, Khadija Masad, Razan J. Al-Marri, Roadha H. Haneefa, Shoja M. Mohamed, Yassir A. Arafat, Kholoud Attoub, Samir Cabral-Marques, Otavio Ramadi, Khalil B. Fernandez-Cabezudo, Maria J. al-Ramadi, Basel K. Int J Mol Sci Article Aberrantly high levels of tyrosine-phosphorylated signal transducer and activator of transcription 3 (p-STAT3) are found constitutively in ~50% of human lung and breast cancers, acting as an oncogenic transcription factor. We previously demonstrated that Manuka honey (MH) inhibits p-STAT3 in breast cancer cells, but the exact mechanism remained unknown. Herein, we show that MH-mediated inhibition of p-STAT3 in breast (MDA-MB-231) and lung (A549) cancer cell lines is accompanied by decreased levels of gp130 and p-JAK2, two upstream components of the IL-6 receptor (IL-6R) signaling pathway. Using an ELISA-based assay, we demonstrate that MH binds directly to IL-6Rα, significantly inhibiting (~60%) its binding to the IL-6 ligand. Importantly, no evidence of MH binding to two other cytokine receptors, IL-11Rα and IL-8R, was found. Moreover, MH did not alter the levels of tyrosine-phosphorylated or total Src family kinases, which are also constitutively activated in cancer cells, suggesting that signaling via other growth factor receptors is unaffected by MH. Binding of five major MH flavonoids (luteolin, quercetin, galangin, pinocembrin, and chrysin) was also tested, and all but pinocembrin could demonstrably bind IL-6Rα, partially (30–35%) blocking IL-6 binding at the highest concentration (50 μM) used. In agreement, each flavonoid inhibited p-STAT3 in a dose-dependent manner, with estimated IC(50) values in the 3.5–70 μM range. Finally, docking analysis confirmed the capacity of each flavonoid to bind in an energetically favorable configuration to IL-6Rα at a site predicted to interfere with ligand binding. Taken together, our findings identify IL-6Rα as a direct target of MH and its flavonoids, highlighting IL-6R blockade as a mechanism for the anti-tumor activity of MH, as well as a viable therapeutic target in IL-6-dependent cancers. MDPI 2019-09-05 /pmc/articles/PMC6769459/ /pubmed/31491838 http://dx.doi.org/10.3390/ijms20184340 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aryappalli, Priyanka
Shabbiri, Khadija
Masad, Razan J.
Al-Marri, Roadha H.
Haneefa, Shoja M.
Mohamed, Yassir A.
Arafat, Kholoud
Attoub, Samir
Cabral-Marques, Otavio
Ramadi, Khalil B.
Fernandez-Cabezudo, Maria J.
al-Ramadi, Basel K.
Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor
title Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor
title_full Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor
title_fullStr Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor
title_full_unstemmed Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor
title_short Inhibition of Tyrosine-Phosphorylated STAT3 in Human Breast and Lung Cancer Cells by Manuka Honey is Mediated by Selective Antagonism of the IL-6 Receptor
title_sort inhibition of tyrosine-phosphorylated stat3 in human breast and lung cancer cells by manuka honey is mediated by selective antagonism of the il-6 receptor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6769459/
https://www.ncbi.nlm.nih.gov/pubmed/31491838
http://dx.doi.org/10.3390/ijms20184340
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