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An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells

The endogenous ligand-activated aryl hydrocarbon receptor (AHR) plays an important role in numerous biologic processes. As the known number of AHR-mediated processes grows, so too does the importance of determining what endogenous AHR ligands are produced, how their production is regulated, and what...

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Autores principales: Novikov, Olga, Wang, Zhongyan, Stanford, Elizabeth A., Parks, Ashley J., Ramirez-Cardenas, Alejandra, Landesman, Esther, Laklouk, Israa, Sarita-Reyes, Carmen, Gusenleitner, Daniel, Li, Amy, Monti, Stefano, Manteiga, Sara, Lee, Kyongbum, Sherr, David H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Pharmacology and Experimental Therapeutics 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5074452/
https://www.ncbi.nlm.nih.gov/pubmed/27573671
http://dx.doi.org/10.1124/mol.116.105361
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author Novikov, Olga
Wang, Zhongyan
Stanford, Elizabeth A.
Parks, Ashley J.
Ramirez-Cardenas, Alejandra
Landesman, Esther
Laklouk, Israa
Sarita-Reyes, Carmen
Gusenleitner, Daniel
Li, Amy
Monti, Stefano
Manteiga, Sara
Lee, Kyongbum
Sherr, David H.
author_facet Novikov, Olga
Wang, Zhongyan
Stanford, Elizabeth A.
Parks, Ashley J.
Ramirez-Cardenas, Alejandra
Landesman, Esther
Laklouk, Israa
Sarita-Reyes, Carmen
Gusenleitner, Daniel
Li, Amy
Monti, Stefano
Manteiga, Sara
Lee, Kyongbum
Sherr, David H.
author_sort Novikov, Olga
collection PubMed
description The endogenous ligand-activated aryl hydrocarbon receptor (AHR) plays an important role in numerous biologic processes. As the known number of AHR-mediated processes grows, so too does the importance of determining what endogenous AHR ligands are produced, how their production is regulated, and what biologic consequences ensue. Consequently, our studies were designed primarily to determine whether ER(−)/PR(−)/Her2(−) breast cancer cells have the potential to produce endogenous AHR ligands and, if so, how production of these ligands is controlled. We postulated that: 1) malignant cells produce tryptophan-derived AHR ligand(s) through the kynurenine pathway; 2) these metabolites have the potential to drive AHR-dependent breast cancer migration; 3) the AHR controls expression of a rate-limiting kynurenine pathway enzyme(s) in a closed amplification loop; and 4) environmental AHR ligands mimic the effects of endogenous ligands. Data presented in this work indicate that primary human breast cancers, and their metastases, express high levels of AHR and tryptophan-2,3-dioxygenase (TDO); representative ER(−)/PR(−)/Her2(−) cell lines express TDO and produce sufficient intracellular kynurenine and xanthurenic acid concentrations to chronically activate the AHR. TDO overexpression, or excess kynurenine or xanthurenic acid, accelerates migration in an AHR-dependent fashion. Environmental AHR ligands 2,3,7,8-tetrachlorodibenzo[p]dioxin and benzo[a]pyrene mimic this effect. AHR knockdown or inhibition significantly reduces TDO2 expression. These studies identify, for the first time, a positive amplification loop in which AHR-dependent TDO2 expression contributes to endogenous AHR ligand production. The net biologic effect of AHR activation by endogenous ligands, which can be mimicked by environmental ligands, is an increase in tumor cell migration, a measure of tumor aggressiveness.
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spelling pubmed-50744522016-11-02 An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells Novikov, Olga Wang, Zhongyan Stanford, Elizabeth A. Parks, Ashley J. Ramirez-Cardenas, Alejandra Landesman, Esther Laklouk, Israa Sarita-Reyes, Carmen Gusenleitner, Daniel Li, Amy Monti, Stefano Manteiga, Sara Lee, Kyongbum Sherr, David H. Mol Pharmacol Articles The endogenous ligand-activated aryl hydrocarbon receptor (AHR) plays an important role in numerous biologic processes. As the known number of AHR-mediated processes grows, so too does the importance of determining what endogenous AHR ligands are produced, how their production is regulated, and what biologic consequences ensue. Consequently, our studies were designed primarily to determine whether ER(−)/PR(−)/Her2(−) breast cancer cells have the potential to produce endogenous AHR ligands and, if so, how production of these ligands is controlled. We postulated that: 1) malignant cells produce tryptophan-derived AHR ligand(s) through the kynurenine pathway; 2) these metabolites have the potential to drive AHR-dependent breast cancer migration; 3) the AHR controls expression of a rate-limiting kynurenine pathway enzyme(s) in a closed amplification loop; and 4) environmental AHR ligands mimic the effects of endogenous ligands. Data presented in this work indicate that primary human breast cancers, and their metastases, express high levels of AHR and tryptophan-2,3-dioxygenase (TDO); representative ER(−)/PR(−)/Her2(−) cell lines express TDO and produce sufficient intracellular kynurenine and xanthurenic acid concentrations to chronically activate the AHR. TDO overexpression, or excess kynurenine or xanthurenic acid, accelerates migration in an AHR-dependent fashion. Environmental AHR ligands 2,3,7,8-tetrachlorodibenzo[p]dioxin and benzo[a]pyrene mimic this effect. AHR knockdown or inhibition significantly reduces TDO2 expression. These studies identify, for the first time, a positive amplification loop in which AHR-dependent TDO2 expression contributes to endogenous AHR ligand production. The net biologic effect of AHR activation by endogenous ligands, which can be mimicked by environmental ligands, is an increase in tumor cell migration, a measure of tumor aggressiveness. The American Society for Pharmacology and Experimental Therapeutics 2016-11 2016-11 /pmc/articles/PMC5074452/ /pubmed/27573671 http://dx.doi.org/10.1124/mol.116.105361 Text en Copyright © 2016 by The Author(s) http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article distributed under the CC BY-NC Attribution 4.0 International license (http://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Articles
Novikov, Olga
Wang, Zhongyan
Stanford, Elizabeth A.
Parks, Ashley J.
Ramirez-Cardenas, Alejandra
Landesman, Esther
Laklouk, Israa
Sarita-Reyes, Carmen
Gusenleitner, Daniel
Li, Amy
Monti, Stefano
Manteiga, Sara
Lee, Kyongbum
Sherr, David H.
An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells
title An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells
title_full An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells
title_fullStr An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells
title_full_unstemmed An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells
title_short An Aryl Hydrocarbon Receptor-Mediated Amplification Loop That Enforces Cell Migration in ER(−)/PR(−)/Her2(−) Human Breast Cancer Cells
title_sort aryl hydrocarbon receptor-mediated amplification loop that enforces cell migration in er(−)/pr(−)/her2(−) human breast cancer cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5074452/
https://www.ncbi.nlm.nih.gov/pubmed/27573671
http://dx.doi.org/10.1124/mol.116.105361
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